Constraints on primordial black holes
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[1] Bradley Dirks,et al. The minimal exponent and k-rationality for local complete intersections , 2022, Journal de l’École polytechnique — Mathématiques.
[2] A. Riotto,et al. Threshold for primordial black holes. II. A simple analytic prescription , 2021 .
[3] V. Takhistov,et al. Test for the Origin of Solar Mass Black Holes. , 2021, Physical review letters.
[4] P. Pani,et al. GW190521 Mass Gap Event and the Primordial Black Hole Scenario. , 2021, Physical review letters.
[5] N. Triantafyllou,et al. NANOGrav signal as mergers of Stupendously Large Primordial Black Holes , 2020, Journal of Cosmology and Astroparticle Physics.
[6] Andrew L. Miller,et al. Probing planetary-mass primordial black holes with continuous gravitational waves , 2020, 2012.12983.
[7] I. Masina,et al. Bounds on warm dark matter from Schwarzschild primordial black holes , 2020, The European Physical Journal Plus.
[8] C. Kouvaris,et al. Gravitational waves from density perturbations in an early matter domination era , 2020, Journal of Cosmology and Astroparticle Physics.
[9] A. Kashlinsky. Cosmological Advection Flows in the Presence of Primordial Black Holes as Dark Matter and Formation of First Sources. , 2020, Physical review letters.
[10] M. Sasaki,et al. Gravitational wave constraints on the primordial black hole dominated early universe , 2020, Journal of Cosmology and Astroparticle Physics.
[11] J. Silk,et al. Boosting small-scale structure via primordial black holes and implications for sub-GeV dark matter annihilation , 2020, 2012.03698.
[12] M. Raidal,et al. Two populations of LIGO-Virgo black holes , 2020, Journal of Cosmology and Astroparticle Physics.
[13] Yin-Zhe Ma,et al. Prospects of future CMB anisotropy probes for primordial black holes , 2020, 2011.12244.
[14] F. Kühnel,et al. Black holes and WIMPs: all or nothing or something else , 2020, Monthly Notices of the Royal Astronomical Society.
[15] K. Kohri,et al. Spins of Primordial Black Holes Formed in the Radiation-dominated Phase of the Universe: First-order Effect , 2020, 2011.00710.
[16] M. Takada,et al. Exploring Primordial Black Holes from the Multiverse with Optical Telescopes. , 2020, Physical review letters.
[17] Phillip Capper. The Proceedings , 2020, International Arbitration: A Handbook.
[18] V. Vennin,et al. Gravitational waves from a universe filled with primordial black holes , 2020, Journal of Cosmology and Astroparticle Physics.
[19] B. Dutta,et al. Constraints on MeV dark matter and primordial black holes: Inverse Compton signals at the SKA , 2020, 2010.05977.
[20] A. Coogan,et al. Direct Detection of Hawking Radiation from Asteroid-Mass Primordial Black Holes. , 2020, Physical review letters.
[21] M. Takada,et al. Testing stochastic gravitational wave signals from primordial black holes with optical telescopes , 2020, 2010.02189.
[22] D. Hooper,et al. GUT baryogenesis with primordial black holes , 2020, 2010.01134.
[23] K. Kohri,et al. Solar-mass primordial black holes explain NANOGrav hint of gravitational waves , 2020 .
[24] V. Takhistov,et al. Gas heating from spinning and non-spinning evaporating primordial black holes , 2020, 2009.11837.
[25] H. Veermäe,et al. Did NANOGrav See a Signal from Primordial Black Hole Formation? , 2020, Physical review letters.
[26] P. Ajith,et al. Search for the Stochastic Gravitational-wave Background Induced by Primordial Curvature Perturbations in LIGO’s Second Observing Run , 2020, The Astrophysical Journal Letters.
[27] Keisuke Inomata. Analytic solutions of scalar perturbations induced by scalar perturbations , 2020, 2008.12300.
[28] F. Kühnel,et al. Constraints on stupendously large black holes , 2020, 2008.08077.
[29] A. Green,et al. Primordial black holes as a dark matter candidate , 2020, Journal of Physics G: Nuclear and Particle Physics.
[30] Hyungjin Kim. A constraint on light primordial black holes from the interstellar medium temperature , 2020, Monthly Notices of the Royal Astronomical Society.
[31] M. Chan,et al. Constraining primordial black hole fraction at the galactic centre using radio observational data , 2020, 2007.05677.
[32] K. Jedamzik. Consistency of Primordial Black Hole Dark Matter with LIGO/Virgo Merger Rates. , 2020, Physical review letters.
[33] V. Takhistov,et al. Constraining Primordial Black Holes with Dwarf Galaxy Heating , 2020, 2007.02213.
[34] M. Oguri,et al. Probing Dark Low-mass Halos and Primordial Black Holes with Frequency-dependent Gravitational Lensing Dispersions of Gravitational Waves , 2020, The Astrophysical Journal.
[35] Tristan L. Smith,et al. The First Three Seconds: a Review of Possible Expansion Histories of the Early Universe , 2020, The Open Journal of Astrophysics.
[36] H. Murayama,et al. Big-bang nucleosynthesis with sub-GeV massive decaying particles , 2020, Journal of Cosmology and Astroparticle Physics.
[37] M. Takada,et al. Hunting Gravitational Wave Black Holes with Microlensing , 2020, The Astrophysical Journal.
[38] D. Hooper,et al. Constraints on primordial black holes from big bang nucleosynthesis revisited , 2020, 2006.03608.
[39] B. Carr,et al. Primordial Black Holes as Dark Matter: Recent Developments , 2020, Annual Review of Nuclear and Particle Science.
[40] A. Loeb,et al. Searching for Black Holes in the Outer Solar System with LSST , 2020, The Astrophysical Journal.
[41] J. Chluba,et al. Thermalization of large energy release in the early Universe , 2020, 2005.11325.
[42] P. Pani,et al. Primordial black holes confront LIGO/Virgo data: current situation , 2020, Journal of Cosmology and Astroparticle Physics.
[43] P. Ajith,et al. Prospects for probing ultralight primordial black holes using the stochastic gravitational-wave background induced by primordial curvature perturbations , 2020, 2005.05693.
[44] N. Bellomo,et al. Mechanical feedback effects on primordial black hole accretion , 2020, Astronomy & Astrophysics.
[45] T. Slatyer,et al. INTEGRAL constraints on primordial black holes and particle dark matter , 2020, 2004.00627.
[46] A. Riotto,et al. Constraints on primordial black holes: The importance of accretion , 2020, Physical Review D.
[47] J. Silk,et al. Primordial rotating black holes , 2020, 2003.12072.
[48] T. Yanagida,et al. Gravitational wave production right after a primordial black hole evaporation , 2020, Physical Review D.
[49] G. Hasinger. Illuminating the dark ages: cosmic backgrounds from accretion onto primordial black hole dark matter , 2020, Journal of Cosmology and Astroparticle Physics.
[50] P. Pani,et al. The evolution of primordial black holes and their final observable spins , 2020, Journal of Cosmology and Astroparticle Physics.
[51] V. Poulin,et al. Cosmic microwave background bounds on primordial black holes including dark matter halo accretion , 2020, 2002.10771.
[52] Jérôme Martin,et al. Metric preheating and radiative decay in single-field inflation , 2020, Journal of Cosmology and Astroparticle Physics.
[53] R. Khatri,et al. CMB and BBN constraints on evaporating primordial black holes revisited , 2020, Journal of Cosmology and Astroparticle Physics.
[54] Shuichiro Yokoyama,et al. A novel formulation of the primordial black hole mass function , 2020 .
[55] J. Brinchmann,et al. The MUSE-Faint survey , 2020, Astronomy & Astrophysics.
[56] M. Taoso,et al. Primordial black holes as dark matter and gravitational waves from single-field polynomial inflation , 2020, Journal of Cosmology and Astroparticle Physics.
[57] M. Hawkins. The signature of primordial black holes in the dark matter halos of galaxies , 2020, Astronomy & Astrophysics.
[58] M. Musso,et al. Application of peaks theory to the abundance of primordial black holes , 2020, Journal of Cosmology and Astroparticle Physics.
[59] A. Riotto,et al. On the primordial black hole mass function for broad spectra , 2020, 2001.04371.
[60] B. A. Boom,et al. GW190425: Observation of a Compact Binary Coalescence with Total Mass $\sim 3.4 M_{\odot}$ , 2020, 2001.01761.
[61] R. Khatri,et al. CMB spectral distortions constraints on primordial black holes, cosmic strings and long lived unstable particles revisited , 2019, Journal of Cosmology and Astroparticle Physics.
[62] R. Sheth,et al. Nonlinear statistics of primordial black holes from Gaussian curvature perturbations , 2019, Physical Review D.
[63] A. Katz,et al. Looking for MACHOs in the spectra of fast radio bursts , 2019, Monthly Notices of the Royal Astronomical Society.
[64] B. Dasgupta,et al. Neutrino and Positron Constraints on Spinning Primordial Black Hole Dark Matter. , 2019, Physical review letters.
[65] J. Peacock,et al. Primordial black hole merger rates: distributions for multiple LIGO observables , 2019, Journal of Cosmology and Astroparticle Physics.
[66] E. Copeland,et al. Constraints on the cosmic string loop collapse fraction from primordial black holes , 2019, Physical Review D.
[67] J. Diego. Constraining the abundance of primordial black holes with gravitational lensing of gravitational waves at LIGO frequencies , 2019, 1911.05736.
[68] I. Mandel,et al. Merger rates in primordial black hole clusters without initial binaries , 2019, Monthly Notices of the Royal Astronomical Society.
[69] Q. Huang,et al. Pulsar Timing Array Constraints on Primordial Black Holes with NANOGrav 11-Year Dataset. , 2019, Physical review letters.
[70] C. Byrnes,et al. Initial clustering and the primordial black hole merger rate , 2019, Journal of Cosmology and Astroparticle Physics.
[71] L. Mayer,et al. Improved constraints from ultra-faint dwarf galaxies on primordial black holes as dark matter , 2019, Monthly Notices of the Royal Astronomical Society.
[72] C. Lunardini,et al. Dirac and Majorana neutrino signatures of primordial black holes , 2019, Journal of Cosmology and Astroparticle Physics.
[73] J. Lesgourgues,et al. Unlocking the synergy between CMB spectral distortions and anisotropies , 2019, Journal of Cosmology and Astroparticle Physics.
[74] T. Jeltema,et al. Updated constraints on asteroid-mass primordial black holes as dark matter , 2019, Physical Review D.
[75] R. Cai,et al. Universal infrared scaling of gravitational wave background spectra , 2019, 1909.13728.
[76] N. Bartolo,et al. Gravitational wave anisotropies from primordial black holes , 2019, Journal of Cosmology and Astroparticle Physics.
[77] James Unwin,et al. What If Planet 9 Is a Primordial Black Hole? , 2019, Physical review letters.
[78] R. Mohayaee,et al. Cusp-to-core transition in low-mass dwarf galaxies induced by dynamical heating of cold dark matter by primordial black holes , 2019, Monthly Notices of the Royal Astronomical Society.
[79] H. Rix,et al. The Separation Distribution of Ultrawide Binaries across Galactic Populations , 2019, The Astrophysical Journal Supplement Series.
[80] T. Matsubara,et al. Clustering of primordial black holes formed in a matter-dominated epoch , 2019, Physical Review D.
[81] N. Aghanim,et al. New horizons in cosmology with spectral distortions of the cosmic microwave background , 2019, Experimental Astronomy.
[82] R. Gregory,et al. Connecting the Higgs potential and primordial black holes , 2019, Physical Review D.
[83] H. Veermäe,et al. Lower bound on the primordial black hole merger rate , 2019, Physical Review D.
[84] S. Hannestad,et al. MeV-scale reheating temperature and thermalization of oscillating neutrinos by radiative and hadronic decays of massive particles , 2019, Journal of Cosmology and Astroparticle Physics.
[85] L. Verde,et al. From primordial black holes abundance to primordial curvature power spectrum (and back) , 2019, Journal of Cosmology and Astroparticle Physics.
[86] R. Cai,et al. Primordial black holes from cosmic domain walls , 2019, Physical Review D.
[87] R. Sheth,et al. Universal threshold for primordial black hole formation , 2019, Physical Review D.
[88] R. B. Barreiro,et al. Planck 2018 results , 2019, Astronomy & Astrophysics.
[89] V. Takhistov,et al. Analytic description of primordial black hole formation from scalar field fragmentation , 2019, Journal of Cosmology and Astroparticle Physics.
[90] M. Raidal,et al. Small-scale structure of primordial black hole dark matter and its implications for accretion , 2019, Physical Review D.
[91] R. Cai,et al. Pulsar timing array constraints on the induced gravitational waves , 2019, Journal of Cosmology and Astroparticle Physics.
[92] Jérôme Martin,et al. Primordial black holes from the preheating instability in single-field inflation , 2019, Journal of Cosmology and Astroparticle Physics.
[93] M. Kawasaki,et al. Formation of supermassive primordial black holes by Affleck-Dine mechanism , 2019, Physical Review D.
[94] R. Sarpong,et al. Bio-inspired synthesis of xishacorenes A, B, and C, and a new congener from fuscol† †Electronic supplementary information (ESI) available. See DOI: 10.1039/c9sc02572c , 2019, Chemical science.
[95] D. Gaggero,et al. X-ray and gamma-ray limits on the primordial black hole abundance from Hawking radiation , 2019, Physics Letters B.
[96] Ranjan Laha. Primordial Black Holes as a Dark Matter Candidate Are Severely Constrained by the Galactic Center 511 keV γ-Ray Line. , 2019, Physical review letters.
[97] A. Riotto,et al. Primordial black holes from broad spectra: abundance and clustering , 2019, Journal of Cosmology and Astroparticle Physics.
[98] J. García-Bellido,et al. Cosmic conundra explained by thermal history and primordial black holes , 2019, Physics of the Dark Universe.
[99] P. Graham,et al. Constraining Primordial Black Hole Abundance with the Galactic 511 keV Line. , 2019, Physical review letters.
[100] O. Mena,et al. Constraining the primordial black hole abundance with 21-cm cosmology , 2019, Physical Review D.
[101] A. Riotto,et al. Non-Gaussian formation of primordial black holes: effects on the threshold , 2019, Journal of Cosmology and Astroparticle Physics.
[102] Chul-Moon Yoo,et al. Abundance of primordial black holes with local non-Gaussianity in peak theory , 2019, Journal of Cosmology and Astroparticle Physics.
[103] Christian I. Johnson,et al. Direct detection of primordial black hole relics as dark matter , 2019, Journal of Cosmology and Astroparticle Physics.
[104] C. Hirata,et al. Revisiting constraints on asteroid-mass primordial black holes as dark matter candidates , 2019, Journal of Cosmology and Astroparticle Physics.
[105] Yang Bai,et al. Primordial extremal black holes as dark matter , 2019, Physical Review D.
[106] Shuichiro Yokoyama,et al. Clustering of primordial black holes with non-Gaussian initial fluctuations , 2019, Progress of Theoretical and Experimental Physics.
[107] J. Silk,et al. Constraining primordial black hole masses with the isotropic gamma ray background , 2019, Physical Review D.
[108] S. Ge. Sublunar-mass primordial black holes from closed axion domain walls , 2019, Physics of the Dark Universe.
[109] S. Profumo,et al. Unraveling the origin of black holes from effective spin measurements with LIGO-Virgo , 2019, Journal of Cosmology and Astroparticle Physics.
[110] M. Takada,et al. On the wave optics effect on primordial black hole constraints from optical microlensing search , 2019, Monthly Notices of the Royal Astronomical Society.
[111] S. Young. The primordial black hole formation criterion re-examined: Parametrisation, timing and the choice of window function , 2019, International Journal of Modern Physics D.
[112] K. Kohri,et al. Gravitational waves induced by scalar perturbations during a gradual transition from an early matter era to the radiation era , 2019, Journal of Physics: Conference Series.
[113] K. Kohri,et al. Enhancement of gravitational waves induced by scalar perturbations due to a sudden transition from an early matter era to the radiation era , 2019, Journal of Physics: Conference Series.
[114] M. Kamionkowski,et al. Constraints on the primordial curvature power spectrum from primordial black holes , 2019, Physical Review D.
[115] I. Mandel,et al. Constraining the masses of microlensing black holes and the mass gap with Gaia DR2 , 2019, Astronomy & Astrophysics.
[116] T. Bringmann,et al. Towards closing the window of primordial black holes as dark matter: The case of large clustering , 2019, Physical Review D.
[117] M. Viel,et al. Lyman-α Forest Constraints on Primordial Black Holes as Dark Matter. , 2019, Physical review letters.
[118] K. Kohri,et al. Prospective constraints on the primordial black hole abundance from the stochastic gravitational-wave backgrounds produced by coalescing events and curvature perturbations , 2019, Physical Review D.
[119] M. Kawasaki,et al. Effect of nonlinearity between density and curvature perturbations on the primordial black hole formation , 2019, Physical Review D.
[120] Caner Unal. Imprints of primordial non-Gaussianity on gravitational wave spectrum , 2019 .
[121] C. Byrnes,et al. WIMPs and stellar-mass primordial black holes are incompatible , 2019, Physical Review D.
[122] K. Abe,et al. Thermal Sunyaev-Zel’dovich anisotropy due to primordial black holes , 2019, Physical Review D.
[123] M. Takada,et al. Constraints on Earth-mass primordial black holes from OGLE 5-year microlensing events , 2019, Physical Review D.
[124] J. A. Dror,et al. Pulsar timing probes of primordial black holes and subhalos , 2019, Physical Review D.
[125] S. Profumo,et al. Melanopogenesis: dark matter of (almost) any mass and baryonic matter from the evaporation of primordial black holes weighing a ton (or less) , 2018, Journal of Cosmology and Astroparticle Physics.
[126] G. Bertone,et al. Multi-wavelength astronomical searches for primordial black holes , 2018, Journal of Cosmology and Astroparticle Physics.
[127] M. Raidal,et al. Formation and evolution of primordial black hole binaries in the early universe , 2018, Journal of Cosmology and Astroparticle Physics.
[128] Yang Bai,et al. Microlensing of x-ray pulsars: A method to detect primordial black hole dark matter , 2018, Physical Review D.
[129] A. Matas,et al. Waves from the centre: probing PBH and other macroscopic dark matter with LISA , 2018, The European Physical Journal C.
[130] S. More,et al. Constraining the mass density of free-floating black holes using razor-thin lensing arcs , 2018, Monthly Notices of the Royal Astronomical Society.
[131] A. Lewis,et al. Primordial Black Hole Dark Matter: LISA Serendipity. , 2018, Physical review letters.
[132] N. Bartolo,et al. Testing primordial black holes as dark matter with LISA , 2018, Physical Review D.
[133] R. Cai,et al. Gravitational Waves Induced by Non-Gaussian Scalar Perturbations. , 2018, Physical review letters.
[134] K. Kohri,et al. Effect of inhomogeneity on primordial black hole formation in the matter dominated era , 2018, Physical Review D.
[135] I. Musco. Threshold for primordial black holes: Dependence on the shape of the cosmological perturbations , 2018, Physical Review D.
[136] Eugene A. Lim,et al. Cosmic string loop collapse in full general relativity , 2018, Physical Review D.
[137] R. O’Shaughnessy,et al. Spin orientations of merging black holes formed from the evolution of stellar binaries , 2018, Physical Review D.
[138] A. Katz,et al. Femtolensing by dark matter revisited , 2018, Journal of Cosmology and Astroparticle Physics.
[139] J. Aumont,et al. Planck2018 results , 2018, Astronomy & Astrophysics.
[140] J. Aumont,et al. Planck2018 results , 2018, Astronomy & Astrophysics.
[141] M. Cirelli,et al. Voyager 1 e^{±} Further Constrain Primordial Black Holes as Dark Matter. , 2018, Physical review letters.
[142] P. Serpico,et al. On the merger rate of primordial black holes: effects of nearest neighbours distribution and clustering , 2018, Journal of Cosmology and Astroparticle Physics.
[143] V. Desjacques,et al. Spatial clustering of primordial black holes , 2018, Physical Review D.
[144] Jun Li,et al. Measuring the spectral running from cosmic microwave background and primordial black holes , 2018, The European Physical Journal C.
[145] M. Kawasaki,et al. Formation of primordial black holes in an axionlike curvaton model , 2018, Physical Review D.
[146] J. Garc'ia-Bellido,et al. Quantum diffusion beyond slow-roll: implications for primordial black-hole production , 2018, Journal of Cosmology and Astroparticle Physics.
[147] A. Hektor,et al. Constraints on primordial black hole dark matter from Galactic center X-ray observations , 2018, Astronomy & Astrophysics.
[148] Yacine Ali-Haïmoud. Correlation Function of High-Threshold Regions and Application to the Initial Small-Scale Clustering of Primordial Black Holes. , 2018, Physical review letters.
[149] C. Germani,et al. Abundance of Primordial Black Holes Depends on the Shape of the Inflationary Power Spectrum. , 2018, Physical review letters.
[150] K. Kohri,et al. Primordial black hole abundance from random Gaussian curvature perturbations and a local density threshold , 2018, Progress of Theoretical and Experimental Physics.
[151] K. Kohri,et al. Semianalytic calculation of gravitational wave spectrum nonlinearly induced from primordial curvature perturbations , 2018, Physical Review D.
[152] B. Carr,et al. Primordial black hole formation during slow reheating after inflation , 2018, Physical Review D.
[153] A. Riotto,et al. Primordial black holes from inflation and quantum diffusion , 2018, Journal of Cosmology and Astroparticle Physics.
[154] Nilanjan Banik,et al. Probing the nature of dark matter particles with stellar streams , 2018, Journal of Cosmology and Astroparticle Physics.
[155] B. Dutta,et al. 21 cm limits on decaying dark matter and primordial black holes , 2018, Physical Review D.
[156] A. Hektor,et al. Constraining primordial black holes with the EDGES 21-cm absorption signal , 2018, Physical Review D.
[157] J. García-Bellido,et al. Updating the MACHO fraction of the Milky Way dark halowith improved mass models , 2018, Monthly Notices of the Royal Astronomical Society.
[158] Jinn-Ouk Gong,et al. Distribution of primordial black holes and 21cm signature , 2018, Journal of Cosmology and Astroparticle Physics.
[159] O. Dor'e,et al. Modeling the Radio Background from the First Black Holes at Cosmic Dawn: Implications for the 21 cm Absorption Amplitude , 2018, The Astrophysical Journal.
[160] Alan E. E. Rogers,et al. An absorption profile centred at 78 megahertz in the sky-averaged spectrum , 2018, Nature.
[161] M. Raidal,et al. Light primordial exotic compact objects as all dark matter , 2018, Physical Review D.
[162] G. Hasinger,et al. Looking at cosmic near-infrared background radiation anisotropies , 2018, Reviews of Modern Physics.
[163] K. Kohri,et al. Primordial black hole dark matter and LIGO/Virgo merger rate from inflation with running spectral indices: formation in the matter- and/or radiation-dominated universe , 2018, Classical and Quantum Gravity.
[164] S. Matarrese,et al. Primordial black holes from inflation and non-Gaussianity , 2018, 1801.09415.
[165] M. Hawkins,et al. Primordial black holes with an accurate QCD equation of state , 2018, Journal of Cosmology and Astroparticle Physics.
[166] Takahiro Tanaka,et al. Primordial black holes—perspectives in gravitational wave astronomy , 2018, 1801.05235.
[167] V. Takhistov,et al. Primordial black holes from inflaton fragmentation into oscillons , 2018, Physical Review D.
[168] J. Lesgourgues,et al. Exotic energy injection with ExoCLASS: application to the Higgs portal model and evaporating black holes , 2018, 1801.01871.
[169] J. Silk,et al. Primordial black holes as generators of cosmic structures , 2018, 1801.00672.
[170] M. Hertzberg,et al. Primordial Black Holes from Polynomial Potentials in Single Field Inflation , 2017, 1712.09750.
[171] J. March-Russell,et al. Black hole genesis of dark matter , 2017, 1712.07664.
[172] S. Boucenna,et al. Novel constraints on mixed dark-matter scenarios of primordial black holes and WIMPs , 2017, Journal of Cosmology and Astroparticle Physics.
[173] J. García-Bellido,et al. Primordial black holes survive SN lensing constraints , 2017, Physics of the Dark Universe.
[174] U. Seljak,et al. Limits on Stellar-Mass Compact Objects as Dark Matter from Gravitational Lensing of Type Ia Supernovae. , 2017, Physical review letters.
[175] J. Garc'ia-Bellido,et al. Seven hints for primordial black hole dark matter , 2017, Physics of the Dark Universe.
[176] M. Kawasaki,et al. Cogenesis of LIGO primordial black holes and dark matter , 2017, Physical Review D.
[177] V. Takhistov. Positrons from primordial black hole microquasars and gamma-ray bursts , 2017, Physics Letters B.
[178] J. Silk,et al. Limits on primordial black holes from $\mu$ distortions in cosmic microwave background , 2017, 1710.06945.
[179] Y. Jing,et al. Primordial black holes as dark matter: constraints from compact ultra-faint dwarfs , 2017, 1710.05032.
[180] A. Vilenkin,et al. Primordial black hole formation by vacuum bubbles , 2017, 1710.02865.
[181] J. Diego,et al. Understanding caustic crossings in giant arcs: Characteristic scales, event rates, and constraints on compact dark matter , 2017, 1710.00148.
[182] L. Verde,et al. Primordial black holes as dark matter: converting constraints from monochromatic to extended mass distributions , 2017, 1709.07467.
[183] Jhu,et al. Merger rate of primordial black-hole binaries , 2017, 1709.06576.
[184] M. Taoso,et al. Primordial black hole dark matter from single field inflation , 2017, 1709.05565.
[185] X. Siemens,et al. New limits on cosmic strings from gravitational wave observation , 2017, 1709.02434.
[186] T. Moroi,et al. Revisiting big-bang nucleosynthesis constraints on long-lived decaying particles , 2017, 1709.01211.
[187] K. Kohri,et al. Electroweak vacuum collapse induced by vacuum fluctuations of the Higgs field around evaporating black holes , 2017, Physical Review D.
[188] V. Takhistov. Transmuted gravity wave signals from primordial black holes , 2017, Physics Letters B.
[189] V. Poulin,et al. CMB bounds on disk-accreting massive primordial black holes , 2017, 1707.04206.
[190] K. Nakao,et al. Spins of primordial black holes formed in the matter-dominated phase of the Universe , 2017, 1707.03595.
[191] J. García-Bellido,et al. Gravitational wave signatures of inflationary models from Primordial Black Hole dark matter , 2017, 1707.02441.
[192] M. Raidal,et al. Gravitational waves from primordial black hole mergers , 2017, 1707.01480.
[193] C. Pattison,et al. Quantum diffusion during inflation and primordial black holes , 2017, 1707.00537.
[194] A. Kusenko,et al. Primordial black holes from scalar field evolution in the early universe , 2017, 1706.09003.
[195] K. Mukaida,et al. False Vacuum Decay Catalyzed by Black Holes , 2017, 1706.04523.
[196] C. Germani,et al. On primordial black holes from an inflection point , 2017, 1706.04226.
[197] B. Carr,et al. Primordial black holes from inflaton and spectator field perturbations in a matter-dominated era , 2017, 1706.03746.
[198] M. Raidal,et al. Single field double inflation and primordial black holes , 2017, 1705.06225.
[199] M. Raidal,et al. Primordial black hole constraints for extended mass functions , 2017, 1705.05567.
[200] Bradley R. Johnson,et al. Prospects for Measuring Cosmic Microwave Background Spectral Distortions in the Presence of Foregrounds , 2017, 1705.01534.
[201] Y. Inoue,et al. New X-ray bound on density of primordial black holes , 2017, 1705.00791.
[202] M. Bejger,et al. Collisions of Neutron Stars with Primordial Black Holes as Fast Radio Bursts Engines , 2017, The Astrophysical Journal.
[203] Jinn-Ouk Gong,et al. Small-scale structure and 21cm fluctuations by primordial black holes , 2017, 1704.04132.
[204] V. Takhistov,et al. Primordial Black Holes and r-Process Nucleosynthesis. , 2017, Physical review letters.
[205] J. Silk. Feedback by Massive Black Holes in Gas-rich Dwarf Galaxies , 2017, 1703.08553.
[206] J. García-Bellido,et al. Massive Primordial Black Holes as Dark Matter and their detection with Gravitational Waves , 2017, 1702.08275.
[207] A. Kirillov,et al. Reionization effect enhancement due to primordial black holes , 2017, 1702.06338.
[208] R. Blandford,et al. Symmetric Achromatic Variability in Active Galaxies: A Powerful New Gravitational Lensing Probe? , 2017, 1702.06582.
[209] J. García-Bellido,et al. Primordial black holes from single field models of inflation , 2017, 1702.03901.
[210] E. Mediavilla,et al. Limits on the Mass and Abundance of Primordial Black Holes from Quasar Gravitational Microlensing , 2017, 1702.00947.
[211] K. Freese,et al. Constraints on Primordial Black Holes with Extended Mass Functions , 2017, 1701.07223.
[212] R. Lupton,et al. Microlensing constraints on primordial black holes with Subaru/HSC Andromeda observations , 2017, Nature Astronomy.
[213] R. Flauger,et al. Cosmic microwave background constraints on primordial black hole dark matter , 2016, 1612.06811.
[214] M. Kamionkowski,et al. Cosmic microwave background limits on accreting primordial black holes , 2016, 1612.05644.
[215] J. Wells,et al. Inflationary theory and pulsar timing investigations of primordial black holes and gravitational waves , 2016, 1612.05279.
[216] Alexander Vilenkin,et al. Primordial black hole and wormhole formation by domain walls , 2016, 1612.03753.
[217] A. Kusenko,et al. Primordial Black Holes from Supersymmetry in the Early Universe. , 2016, Physical review letters.
[218] G. Bertone,et al. Searching for Primordial Black Holes in the Radio and X-Ray Sky. , 2016, Physical review letters.
[219] Y. Akrami,et al. Uncertainties in primordial black-hole constraints on the primordial power spectrum , 2016, 1611.10069.
[220] Sai,et al. Solving puzzles of GW150914 by primordial black holes , 2016, 1611.00541.
[221] J. Lesgourgues,et al. Cosmological constraints on exotic injection of electromagnetic energy , 2016, 1610.10051.
[222] Adrian Liu,et al. Pulsar timing can constrain primordial black holes in the LIGO mass window , 2016, 1610.04234.
[223] J. Yokoyama,et al. Supermassive black holes formed by direct collapse of inflationary perturbations , 2016, 1609.02245.
[224] K. Nakao,et al. PRIMORDIAL BLACK HOLE FORMATION IN THE MATTER-DOMINATED PHASE OF THE UNIVERSE , 2016, 1609.01588.
[225] Ke Wang,et al. Constraint on the abundance of primordial black holes in dark matter from Planck data , 2016, 1608.02174.
[226] Y. Eroshenko. Dark matter density spikes around primordial black holes , 2016, 1607.00612.
[227] J. Bovy,et al. Linear perturbation theory for tidal streams and the small-scale CDM power spectrum , 2016, 1606.03470.
[228] M. Kawasaki,et al. Revisiting constraints on small scale perturbations from big-bang nucleosynthesis , 2016, 1605.04646.
[229] A. Kashlinsky. LIGO GRAVITATIONAL WAVE DETECTION, PRIMORDIAL BLACK HOLES, AND THE NEAR-IR COSMIC INFRARED BACKGROUND ANISOTROPIES , 2016, 1605.04023.
[230] Timothy D. Brandt. CONSTRAINTS ON MACHO DARK MATTER FROM COMPACT STELLAR SYSTEMS IN ULTRA-FAINT DWARF GALAXIES , 2016, 1605.03665.
[231] M. Kamionkowski,et al. Lensing of Fast Radio Bursts as a Probe of Compact Dark Matter. , 2016, Physical review letters.
[232] J. Yokoyama,et al. Constraints on primordial black holes from the Galactic gamma-ray background , 2016, 1604.05349.
[233] Y. Eroshenko,et al. Gravitational waves from primordial black holes collisions in binary systems , 2016, Journal of Physics: Conference Series.
[234] Takahiro Tanaka,et al. Primordial Black Hole Scenario for the Gravitational-Wave Event GW150914. , 2016, Physical review letters.
[235] J. Garc'ia-Bellido,et al. The clustering of massive Primordial Black Holes as Dark Matter: measuring their mass distribution with Advanced LIGO , 2016, 1603.05234.
[236] A. Riess,et al. Did LIGO Detect Dark Matter? , 2016, Physical review letters.
[237] Tomasz Bulik,et al. The first gravitational-wave source from the isolated evolution of two stars in the 40–100 solar mass range , 2016, Nature.
[238] S. Rahvar,et al. RESOLVING MICROLENSING EVENTS WITH TRIGGERED VLBI , 2016, 1601.05801.
[239] A. Vilenkin,et al. Black holes and the multiverse , 2015, 1512.01819.
[240] J. Pradler,et al. Light Particle Solution to the Cosmic Lithium Problem. , 2015, Physical review letters.
[241] A. Bressan,et al. Lithium evolution in metal-poor stars: from pre-main sequence to the Spite plateau , 2015, 1506.05993.
[242] T. Nakama,et al. Primordial black holes as a novel probe of primordial gravitational waves , 2015, 1506.05228.
[243] A. Kirillov,et al. Clusters of primordial black holes and reionization problem , 2015 .
[244] P. Graham,et al. Dark Matter Triggers of Supernovae , 2015, 1505.04444.
[245] R. Gregory,et al. Vacuum metastability with black holes , 2015, 1503.07331.
[246] Chul-Moon Yoo,et al. Cosmological long-wavelength solutions and primordial black hole formation , 2015, 1503.03934.
[247] M. Hawkins. A new look at microlensing limits on dark matter in the Galactic halo , 2015, 1503.01935.
[248] C. A. Oxborrow,et al. Planck2015 results , 2015, Astronomy & Astrophysics.
[249] J. Garc'ia-Bellido,et al. Massive Primordial Black Holes from Hybrid Inflation as Dark Matter and the seeds of Galaxies , 2015, 1501.07565.
[250] R. Gregory,et al. Gravity and the Stability of the Higgs Vacuum. , 2015, Physical review letters.
[251] A. Kirillov,et al. Primordial black holes with mass 1016−1017 g and reionization of the Universe , 2014, 1409.8601.
[252] M. Tytgat,et al. Tidal capture of primordial black holes by neutron stars , 2014, 1409.0469.
[253] C. Allen,et al. THE END OF THE MACHO ERA, REVISITED: NEW LIMITS ON MACHO MASSES FROM HALO WIDE BINARIES , 2014, 1406.5169.
[254] K. Kohri,et al. Testing scenarios of primordial black holes being the seeds of supermassive black holes by ultracompact minihalos and CMB $\mu$-distortions , 2014, 1405.5999.
[255] J. Uzan,et al. Modified big bang nucleosynthesis with nonstandard neutron sources , 2014, 1405.1718.
[256] A. Loeb,et al. Tidal capture of a primordial black hole by a neutron star: implications for constraints on dark matter , 2014, 1401.3025.
[257] M. Kawasaki,et al. Baryon asymmetry, dark matter, and density perturbation from primordial black holes , 2014, 1401.1909.
[258] K. Kohri,et al. Erratum: Threshold of primordial black hole formation [Phys. Rev. D 88, 084051 (2013)] , 2014 .
[259] S. Djorgovski,et al. ERRATUM: “STRUCTURE AND DYNAMICS OF THE GLOBULAR CLUSTER PALOMAR 13” (2011, ApJ, 743, 167) , 2013 .
[260] K. Griest,et al. New limits on primordial black hole dark matter from an analysis of Kepler source microlensing data. , 2013, Physical review letters.
[261] J. Yokoyama,et al. Identifying the most crucial parameters of the initial curvature profile for primordial black hole formation , 2013, 1310.3007.
[262] K. Kohri,et al. Threshold of primordial black hole formation , 2013, 1309.4201.
[263] Napoli,et al. Microlensing towards the SMC: a new analysis of OGLE and EROS results , 2013, 1308.4281.
[264] Matthew J. Lehner,et al. EXPERIMENTAL LIMITS ON PRIMORDIAL BLACK HOLE DARK MATTER FROM THE FIRST 2 YR OF KEPLER DATA , 2013, 1307.5798.
[265] K. Kohri,et al. Observable induced gravitational waves from an early matter phase , 2013, 1303.4519.
[266] M. Pshirkov,et al. Constraints on primordial black holes as dark matter candidates from capture by neutron stars , 2013, 1301.4984.
[267] K. Kohri,et al. Primordial black holes from the inflating curvaton , 2012, 1211.2371.
[268] R. Ibata,et al. Do globular clusters possess dark matter haloes? A case study in NGC 2419 , 2012, 1210.7787.
[269] A. Finoguenov,et al. CROSS-CORRELATING COSMIC INFRARED AND X-RAY BACKGROUND FLUCTUATIONS: EVIDENCE OF SIGNIFICANT BLACK HOLE POPULATIONS AMONG THE CIB SOURCES , 2012, 1210.5302.
[270] M. Pshirkov,et al. Constraints on primordial black holes as dark matter candidates from star formation , 2012, 1209.6021.
[271] T. Yanagida,et al. Primordial black hole formation from an axionlike curvaton model , 2012, 1207.2550.
[272] A. Barnacka,et al. New constraints on primordial black holes abundance from femtolensing of gamma-ray bursts , 2012, 1204.2056.
[273] K. Kohri,et al. Observable Spectra of Induced Gravitational Waves from Inflation , 2012, 1203.4663.
[274] J. Tromp,et al. DETECTABLE SEISMIC CONSEQUENCES OF THE INTERACTION OF A PRIMORDIAL BLACK HOLE WITH EARTH , 2012, 1203.3806.
[275] J. Chluba,et al. PROBING THE INFLATON: SMALL-SCALE POWER SPECTRUM CONSTRAINTS FROM MEASUREMENTS OF THE COSMIC MICROWAVE BACKGROUND ENERGY SPECTRUM , 2012, 1203.2681.
[276] S. H. Moseley,et al. NEW MEASUREMENTS OF THE COSMIC INFRARED BACKGROUND FLUCTUATIONS IN DEEP SPITZER/IRAC SURVEY DATA AND THEIR COSMOLOGICAL IMPLICATIONS , 2012, 1201.5617.
[277] J. Miller,et al. Primordial black hole formation in the early universe: critical behaviour and self-similarity , 2012, 1201.2379.
[278] J. Chisholm. Clustering of primordial black holes. II. Evolution of bound systems , 2011, 1110.4402.
[279] T. Bringmann,et al. Improved constraints on the primordial power spectrum at small scales from ultracompact minihalos , 2011, 1110.2484.
[280] S. Djorgovski,et al. STRUCTURE AND DYNAMICS OF THE GLOBULAR CLUSTER PALOMAR 13 , 2011, 1110.0484.
[281] J. Yokoyama,et al. Erratum: Gravitational-Wave Background as a Probe of the Primordial Black-Hole Abundance [Phys. Rev. Lett.102, 161101 (2009)] , 2011 .
[282] R. Poleski,et al. The OGLE view of microlensing towards the Magellanic Clouds – IV. OGLE-III SMC data and final conclusions on MACHOs , 2011, 1106.2925.
[283] J. Weller,et al. Separate universes do not constrain primordial black hole formation , 2010, 1012.4369.
[284] R. Poleski,et al. The OGLE view of microlensing towards the Magellanic Clouds – III. Ruling out subsolar MACHOs with the OGLE‐III LMC data★ , 2010, 1012.1154.
[285] J. Yokoyama,et al. Gravitational-wave constraints on abundance of primordial black holes , 2010 .
[286] J. Yokoyama,et al. Gravitational-Wave Constraints on the Abundance of Primordial Black Holes(Astrophysics and Cosmology) , 2009, 0912.5317.
[287] J. Yokoyama,et al. New cosmological constraints on primordial black holes , 2009, 0912.5297.
[288] P. Panci,et al. Diffuse gamma ray constraints on annihilating or decaying Dark Matter after Fermi , 2009, 0912.0663.
[289] C. Bambi,et al. Erratum to: “Primordial black holes and the observed Galactic 511 keV line” [Phys. Lett. B 670 (2008) 174–178] , 2009 .
[290] J. Chluba. Could the cosmological recombination spectrum help us understand annihilating dark matter , 2009, 0910.3663.
[291] E. Falco,et al. MICROLENSING-BASED ESTIMATE OF THE MASS FRACTION IN COMPACT OBJECTS IN LENS GALAXIES , 2009, 0910.3645.
[292] T. Totani. Size Evolution of Early-Type Galaxies and Massive Compact Objects as Dark Matter , 2009, 0908.3295.
[293] E. Bugaev,et al. Induced gravitational wave background and primordial black holes , 2009, 0908.0664.
[294] R. Sunyaev,et al. Signals from the epoch of cosmological recombination – Karl Schwarzschild Award Lecture 2008 , 2009, 0908.0435.
[295] D. Wands,et al. Constraints on primordial density perturbations from induced gravitational waves , 2009, 0907.4073.
[296] Matthew J. Lake,et al. String necklaces and primordial black holes from type IIB strings , 2009, 0906.3695.
[297] I. Grenier,et al. New constraints on the primordial black hole number density from Galactic γ-ray astronomy , 2009, 0906.1648.
[298] K. Kohri,et al. Generating Primordial Black Holes Via Hilltop-Type Inflation Models , 2009, 0906.1398.
[299] Douglas P. Finkbeiner,et al. CMB constraints on WIMP annihilation: Energy absorption during the recombination epoch , 2009, 0906.1197.
[300] Karim A. Malik,et al. Generalised constraints on the curvature perturbation from primordial black holes , 2009, 0903.3184.
[301] M. Irwin,et al. On the reported death of the MACHO era , 2009, 0903.1644.
[302] N. Gehrels,et al. Spectral Lags of Gamma‐Ray Bursts from Primordial Black Hole (PBH) Evaporations , 2009, 0901.0542.
[303] J. Yokoyama,et al. Gravitational-wave background as a probe of the primordial black-hole abundance. , 2008, Physical review letters.
[304] E. Bugaev,et al. Constraints on amplitudes of curvature perturbations from primordial black holes , 2008, 0812.4247.
[305] A. Polnarev,et al. Primordial black hole formation in the radiative era: investigation of the critical nature of the collapse , 2008, 0811.1452.
[306] J. Becker,et al. NO OBSERVATIONAL CONSTRAINTS FROM HYPOTHETICAL COLLISIONS OF HYPOTHETICAL DARK HALO PRIMORDIAL BLACK HOLES WITH GALACTIC OBJECTS , 2008, 0810.3140.
[307] A. Sergeev,et al. Searching for very-high-energy gamma-ray bursts from evaporating primordial black holes , 2008, 0808.3093.
[308] K. C. Kim,et al. Measurement of the cosmic-ray low-energy antiproton spectrum with the first BESS-Polar Antarctic flight , 2008, 0805.1754.
[309] T. Moroi,et al. Big-bang nucleosynthesis and gravitinos , 2008, 0804.3745.
[310] J. Yokoyama,et al. Single-field inflation, anomalous enhancement of superhorizon fluctuations and non-Gaussianity in primordial black hole formation , 2008, 0804.3470.
[311] N. Sugiyama,et al. Constraints on primordial black holes by distortions of the cosmic microwave background , 2008, 0801.3172.
[312] C. Bambi,et al. Primordial black holes and the observed Galactic 511 keV line , 2008, 0801.2786.
[313] A. Melchiorri,et al. Black hole formation and slow-roll inflation , 2007, 0711.5006.
[314] J. Yokoyama,et al. Formation of intermediate-mass black holes as primordial black holes in the inflationary cosmology with running spectral index , 2007, 0711.3886.
[315] B. Carr,et al. Do evaporating black holes form photospheres , 2007, 0709.2380.
[316] J. Ostriker,et al. Effect of Primordial Black Holes on the Cosmic Microwave Background and Cosmological Parameter Estimates , 2007, 0709.0524.
[317] B. Carr,et al. Self-similar cosmological solutions with dark energy. II. Black holes, naked singularities, and wormholes , 2007, 0707.0530.
[318] B. Carr,et al. Self-similar cosmological solutions with dark energy. I. Formulation and asymptotic analysis , 2007, 0707.0528.
[319] Zheng Zheng,et al. Constraints on radiative dark-matter decay from the cosmic microwave background , 2007, 0704.2444.
[320] A. Kashlinsky,et al. Erratum: "New Measurements of Cosmic Infrared Background Fluctuations from Early Epochs" ([URL ADDRESS="/cgi-bin/resolve?2007ApJ...654L...5K" STATUS="OKAY"]ApJ 655, L5 [2007][/URL]) , 2007 .
[321] A. Jacholkowska. Charged Cosmic Rays and Photons in AMS , 2007 .
[322] M. Hawkins. Timescale of variation and the size of the accretion disc in active galactic nuclei , 2006, astro-ph/0611491.
[323] J. Ostriker,et al. Growth of Structure Seeded by Primordial Black Holes , 2006, astro-ph/0608642.
[324] L. S. Collaboration. Searching for a Stochastic Background of Gravitational Waves with LIGO , 2006, astro-ph/0608606.
[325] Moscow,et al. A probable stellar solution to the cosmological lithium discrepancy , 2006, Nature.
[326] J. Beaulieu,et al. Limits on the Macho Content of the Galactic Halo from the EROS-2 Survey of the Magellanic Clouds , 2006, astro-ph/0607207.
[327] A. Polnarev,et al. Curvature profiles as initial conditions for primordial black hole formation , 2006, gr-qc/0605122.
[328] J. Kapusta,et al. Antimatter from microscopic black holes , 2006, astro-ph/0604439.
[329] Katsuhiko Sato,et al. Mass spectrum of primordial black holes from inflationary perturbation in the Randall–Sundrum braneworld: a limit on blue spectra , 2006, astro-ph/0603509.
[330] Xiaohui Fan,et al. Observational Constraints on Cosmic Reionization , 2006, astro-ph/0602375.
[331] T. Weekes,et al. A new search for primordial black hole evaporations using the Whipple gamma-ray telescope , 2006 .
[332] K. Nozari,et al. Gravitational Uncertainty and Black Hole Remnants , 2005, 0809.3144.
[333] S. H. Moseley,et al. Tracing the first stars with cosmic infrared background fluctuations , 2005, astro-ph/0511105.
[334] C. Matthey,et al. Study of Very Short Gamma-Ray Bursts: New Results from BATSE and Konus , 2005 .
[335] M. Nagasawa. Primordial black hole formation by stabilized embedded strings in the early universe , 2005 .
[336] T. Matsuda. Primordial black holes from cosmic necklaces , 2005, hep-ph/0509062.
[337] J. Chisholm. Clustering of primordial black holes: Basic results , 2005, astro-ph/0509141.
[338] T. Moroi,et al. Big-bang nucleosynthesis with unstable gravitino and upper bound on the reheating temperature , 2005, hep-ph/0507245.
[339] S. Paulin-Henriksson,et al. POINT-AGAPE pixel lensing survey of M31: Evidence for a MACHO contribution to galactic halos , 2005, astro-ph/0504188.
[340] W. Kinney. Horizon crossing and inflation with large η , 2005, gr-qc/0503017.
[341] L. Rezzolla,et al. Computations of primordial black-hole formation , 2004, gr-qc/0412063.
[342] B. Carr,et al. Upper limits on the size of a primordial black hole , 2004, astro-ph/0412134.
[343] T. Moroi,et al. Big-Bang nucleosynthesis and hadronic decay of long-lived massive particles , 2004, astro-ph/0408426.
[344] Katsuhiko Sato,et al. Sub-GeV galactic cosmic-ray antiprotons from primordial black holes in the Randall-Sundrum braneworld , 2004, astro-ph/0408369.
[345] A. Barrau,et al. Gravitino production by primordial black hole evaporation and constraints on the inhomogeneity of the early universe , 2004, astro-ph/0406621.
[346] Norbert Duechting. Supermassive black holes from primordial black hole seeds , 2004, astro-ph/0406260.
[347] Pisin Chen. PLANCK-SIZE BLACK HOLE REMNANTS AS DARK MATTER , 2004, astro-ph/0406514.
[348] Karim A. Malik,et al. paper added in error by admin team: I do not seem to be able to delete it , 2004, astro-ph/0403181.
[349] T. Moroi,et al. Hadronic decay of late-decaying particles and big-bang nucleosynthesis , 2004, astro-ph/0402490.
[350] A. Sakharov,et al. Primordial structure of massive black hole clusters , 2004, astro-ph/0401532.
[351] M. Kamionkowski,et al. Particle decays during the cosmic dark ages , 2003, astro-ph/0310473.
[352] Katsuhiko Sato,et al. Constraints on the mass spectrum of primordial black holes and braneworld parameters from the high-energy diffuse photon background , 2003, astro-ph/0309170.
[353] T. Marquart,et al. Can microlensing explain the long-term optical variability of quasars? , 2003, astro-ph/0306434.
[354] Takahiro Tanaka,et al. Gravitational waves from sub-lunar-mass primordial black-hole binaries: a new probe of extradimensions. , 2003, Physical review letters.
[355] G. Boudoul,et al. Peculiar relics from Primordial Black Holes in the inflationary paradigm , 2003, astro-ph/0303330.
[356] B. Fields,et al. Primordial Nucleosynthesis in Light of WMAP , 2003, astro-ph/0302431.
[357] D. Spergel,et al. Primordial Black Holes as Dark Matter: The Power Spectrum and Evaporation of Early Structures , 2003, astro-ph/0302035.
[358] A. Liddle,et al. Primordial black holes in braneworld cosmologies: Astrophysical constraints , 2003, astro-ph/0301568.
[359] J. Kapusta,et al. High temperature matter and neutrino spectra from microscopic black holes , 2002, astro-ph/0211579.
[360] G. Boudoul,et al. Galactic cosmic rays from PBHs and primordial spectra with a scale , 2002, astro-ph/0210149.
[361] A. Majumdar,et al. Domination of black hole accretion in brane cosmology. , 2002, Physical review letters.
[362] R. Taillet,et al. Antideuterons as a probe of primordial black holes , 2002, astro-ph/0207395.
[363] K. Konishchev,et al. Cosmological constraints from evaporation of primordial black holes , 2002, astro-ph/0206082.
[364] Pisin Chen,et al. Black Hole Remnants and Dark Matter , 2002, gr-qc/0205106.
[365] A. Liddle,et al. Primordial black holes in braneworld cosmologies: Formation, cosmological evolution, and evaporation , 2002, astro-ph/0205149.
[366] R. Bean,et al. Could supermassive black holes be quintessential primordial black holes , 2002, astro-ph/0204486.
[367] Moscow,et al. Black-hole relics in string gravity: last stages of Hawking evaporation , 2002, gr-qc/0201069.
[368] B. Carr,et al. Tolman-Bondi collapse in scalar-tensor theories as a probe of gravitational memory , 2001, astro-ph/0112563.
[369] D. Cline,et al. Evidence for a galactic origin of very short gamma ray bursts and primordial black hole sources , 2001, astro-ph/0110276.
[370] D. Lyth,et al. Generating the curvature perturbation without an inflaton , 2001, hep-ph/0110002.
[371] J. Kapusta,et al. High temperature matter and gamma ray spectra from microscopic black holes , 2001, gr-qc/0109090.
[372] Scott D. Thomas,et al. High-energy colliders as black hole factories: The End of short distance physics , 2001, hep-ph/0106219.
[373] A. Sakharov,et al. The formation of primary galactic nuclei during phase transitions in the early universe , 2001, hep-ph/0106187.
[374] WiZardCAPRICE Collaboration. The Cosmic-Ray antiproton flux between 3 and 49 GeV , 2001, astro-ph/0103513.
[375] J. Norris,et al. Limits on the cosmological abundance of supermassive compact objects from a millilensing search in gamma-ray burst data. , 2001, Physical review letters.
[376] A. Tomaney,et al. MACHO Project Limits on Black Hole Dark Matter in the 1-30 M☉ Range , 2000, astro-ph/0011506.
[377] B. Bassett,et al. Inflationary preheating and primordial black holes , 2000, hep-ph/0008328.
[378] J. Kapusta. Relativistic Viscous Fluid Description of Microscopic Black Hole Wind , 2000, astro-ph/0008222.
[379] Karim A. Malik,et al. Primordial black hole production due to preheating , 2000, hep-ph/0008113.
[380] A. Drake,et al. The MACHO Project: Microlensing Detection Efficiency , 2000, astro-ph/0003392.
[381] M. Lemoine. Moduli constraints on primordial black holes , 2000, hep-ph/0001238.
[382] J. Yokoyama,et al. Primordial black holes and primordial nucleosynthesis: Effects of hadron injection from low mass holes , 1999, astro-ph/9908160.
[383] A. Barrau. Primordial black holes as a source of extremely high energy cosmic rays , 1999, astro-ph/9907347.
[384] M. Shibata,et al. Black hole formation in the Friedmann universe: Formulation and computation in numerical relativity , 1999, gr-qc/9905064.
[385] M. Sakellariadou,et al. Dynamical Constraints on Dark Matter in Compact Objects , 1999 .
[386] G. Kribs,et al. Bounds from primordial black holes with a near critical collapse initial mass function , 1999, astro-ph/9904021.
[387] A. Green. Supersymmetry and primordial black hole abundance constraints , 1999, astro-ph/9903484.
[388] A. L. Larsen,et al. Cosmic String Loops Collapsing to Black Holes , 1999, gr-qc/9902048.
[389] J. Niemeyer,et al. Dynamics of primordial black hole formation , 1999, astro-ph/9901292.
[390] J. Niemeyer,et al. Primordial black hole formation during first-order phase transitions , 1999, astro-ph/9901293.
[391] A. Liddle,et al. Critical collapse and the primordial black hole initial mass function , 1999, astro-ph/9901268.
[392] B. Carr,et al. Cosmic rays from primordial black holes and constraints on the early universe , 1998 .
[393] S. Sarkar,et al. Cosmic microwave background anisotropy in the decaying neutrino cosmology , 1998, astro-ph/9805108.
[394] K. Hurley,et al. Gravitationally Lensed Gamma-Ray Bursts as Probes of Dark Compact Objects , 1998, astro-ph/9810391.
[395] G. Servant,et al. Numerical study of Hawking radiation photosphere formation around microscopic black holes , 1998, hep-ph/9810439.
[396] Takahiro Tanaka,et al. Low frequency gravitational waves from black hole MACHO binaries , 1998, astro-ph/9809395.
[397] J. Yokoyama. Cosmological constraints on primordial black holes produced in the near-critical gravitational collapse , 1998, gr-qc/9804041.
[398] J. Yokoyama. Chaotic new inflation and formation of primordial black holes , 1998, astro-ph/9802357.
[399] T. Yanagida,et al. Primordial Black Hole Formation in a Double Inflation Model in Supergravity , 1997, hep-ph/9710259.
[400] J. G. Stacy,et al. EGRET Observations of the Extragalactic Gamma-Ray Emission , 1997, astro-ph/9709257.
[401] J. Niemeyer,et al. Near-Critical Gravitational Collapse and the Initial Mass Function of Primordial Black Holes , 1997, astro-ph/9709072.
[402] D. Cline,et al. Further Evidence for Some Gamma-Ray Bursts Consistent with Primordial Black Hole Evaporation , 1997 .
[403] K. Thorne,et al. Gravitational Waves from Coalescing Black Hole MACHO Binaries , 1997, astro-ph/9708060.
[404] U. Wichoski,et al. Limits on black hole formation from cosmic string loops , 1997, astro-ph/9707146.
[405] A. Liddle,et al. Constraints on the density perturbation spectrum from primordial black holes , 1997, astro-ph/9704251.
[406] E. Stewart. Flattening the inflatons potential with quantum corrections II , 1997, hep-ph/9703232.
[407] A. Heckler. Calculation of the Emergent Spectrum and Observation of Primordial Black Holes , 1997, astro-ph/9702027.
[408] A. Belyanin,et al. GAMMA-RAY BURSTS FROM THE FINAL STAGE OF PRIMORDIAL BLACK HOLE EVAPORATION , 1996 .
[409] Carr,et al. Formation and evaporation of primordial black holes in scalar-tensor gravity theories. , 1996, Physical review. D, Particles and fields.
[410] K. Jedamzik. Primordial Black Hole Formation during the QCD Epoch , 1996, astro-ph/9605152.
[411] J. García-Bellido,et al. Density perturbations and black hole formation in hybrid inflation. , 1996, Physical review. D, Particles and fields.
[412] A. Heckler. Formation of a Hawking-radiation photosphere around microscopic black holes , 1996, astro-ph/9601029.
[413] Maki,et al. Local flux of low-energy antiprotons from evaporating primordial black holes. , 1996, Physical review letters.
[414] M. Soljačić,et al. Supernatural inflation: inflation from supersymmetry with no (very) small parameters , 1995, hep-ph/9512439.
[415] E. Wright. On the Density of Primordial Black Holes in the Galactic Halo , 1995, astro-ph/9509074.
[416] Ivanov,et al. Inflation and primordial black holes as dark matter. , 1994, Physical review. D, Particles and fields.
[417] Guohong Xu,et al. Dynamics of massive black holes as a possible candidate of Galactic dark matter , 1994 .
[418] D. Cline,et al. Very short gamma-ray bursts and primordial black hole evaporation , 1994 .
[419] D. Semikoz. On the detection of individual primordial black hole explosions , 1994 .
[420] D. Thompson,et al. Search of the Energetic Gamma-Ray Experiment Telescope (EGRET) Data for High-Energy Gamma-Ray Microsecond Bursts , 1994 .
[421] Moss,et al. Singularity formation from colliding bubbles. , 1994, Physical review. D, Particles and fields.
[422] Gilbert,et al. Black hole relics and inflation: Limits on blue perturbation spectra. , 1994, Physical review. D, Particles and fields.
[423] C. Steidel,et al. Observational Limits on Omega in Stars, Brown Dwarfs, and Stellar Remnants from Gravitational Microlensing , 1994 .
[424] M. R. S. Hawkins,et al. Gravitational microlensing, quasar variability and missing matter , 1993, Nature.
[425] Carr,et al. Primordial black holes and generalized constraints on chaotic inflation. , 1993, Physical review. D, Particles and fields.
[426] B. Moore. An Upper Limit to the Mass of Black Holes in the Halo of the Galaxy , 1993, astro-ph/9306004.
[427] J. Silk,et al. Baryon isocurvature fluctuations at small scales and baryonic dark matter. , 1993, Physical review. D, Particles and fields.
[428] Hu,et al. Thermalization constraints and spectral distortions for massive unstable relic particles. , 1993, Physical review letters.
[429] Martin J. Rees,et al. Constraints on massive black holes as dark matter candidates , 1992 .
[430] Copeland,et al. The cosmology of black hole relics. , 1992, Physical review. D, Particles and fields.
[431] Caldwell,et al. Cosmological constraints on cosmic-string gravitational radiation. , 1992, Physical review. D, Particles and fields.
[432] D. Cline,et al. Possibility of Unique Detection of Primordial Black Hole Gamma-Ray Bursts , 1992 .
[433] J. L. Lopez,et al. Astrophysical constraints on massive unstable neutral relic particles , 1992 .
[434] T. Weekes,et al. Gamma rays and energetic particles from primordial black holes , 1991, Nature.
[435] MacGibbon. Quark- and gluon-jet emission from primordial black holes. II. The emission over the black-hole lifetime. , 1991, Physical review. D, Particles and fields.
[436] B. Carr,et al. Cosmic rays from primordial black holes , 1991 .
[437] A. Polnarev,et al. Formation of primordial black holes by cosmic strings. , 1991, Physical review. D, Particles and fields.
[438] Webber,et al. Quark- and gluon-jet emission from primordial black holes: The instantaneous spectra. , 1990, Physical review. D, Particles and fields.
[439] S. Hawking. Black holes from cosmic strings , 1989 .
[440] P. Steinhardt,et al. Bubble percolation in extended inflationary models , 1989 .
[441] J. MacGibbon. Can Planck-mass relics of evaporating black holes close the Universe? , 1987, Nature.
[442] C. Lacey,et al. Dark clusters in galactic halos , 1987 .
[443] Hiscock,et al. Can black holes nucleate vacuum phase transitions? , 1987, Physical review. D, Particles and fields.
[444] J. R. Bond,et al. Spectrum and Anisotropy of the Cosmic Infrared Background , 1986 .
[445] Bohdan Paczynski,et al. Gravitational microlensing by the galactic halo , 1986 .
[446] C. Lacey,et al. Massive black holes in galactic halos , 1985 .
[447] Boris A. Malomed,et al. Gravitational instability of scalar fields and formation of primordial black holes , 1985 .
[448] S. Tremaine,et al. Maximum mass of objects that constitute unseen disk material , 1985 .
[449] M. Khlopov,et al. Cosmology, primordial black holes, and supermassive particles , 1985 .
[450] S. Sarkar,et al. Cosmological and experimental constraints on the tau neutrino , 1984 .
[451] C. Hogan. Massive black holes generated by cosmic strings , 1984 .
[452] J. Oliensis,et al. Ultra high energy radiation from a black hole , 1984 .
[453] J. Bond,et al. Gravitational waves from a population of binary black holes , 1984 .
[454] M. Rees,et al. Can pregalactic objects generate galaxies , 1984 .
[455] R. Price,et al. Formation of population III stars and galaxies with primordial planetary-mass black holes , 1983 .
[456] J. Silk,et al. Can graininess in the early universe make galaxies , 1983 .
[457] H. Kodama,et al. Abundance of Primordial Holes Produced by Cosmological First-Order Phase Transition , 1982 .
[458] S. Hawking,et al. Bubble collisions in the very early universe , 1982 .
[459] D. Schramm,et al. Spontaneous generation of density perturbations in the early Universe , 1982, Nature.
[460] M. Turner. Could primordial black holes be the source of the cosmic ray antiprotons? , 1982, Nature.
[461] A. Wolfendale,et al. Antiprotons in the cosmic radiation , 1981, Nature.
[462] Katsuhiko Sato,et al. First-order phase transition of a vacuum and the expansion of the Universe , 1981 .
[463] B. Carr. Pregalactic black hole accretion and the thermal history of the Universe , 1981 .
[464] A. Guth. Inflationary universe: A possible solution to the horizon and flatness problems , 1981 .
[465] M. Khlopov,et al. Primordial black holes as a cosmological test of grand unification , 1980 .
[466] D. Lindley. Primordial black holes and the deuterium abundance , 1980 .
[467] B. Carr. Can pregalactic black holes produce the hard X-ray background? , 1980, Nature.
[468] B. Carr. The contribution of accreting black holes to the background radiation density , 1979 .
[469] R. Henriksen,et al. Formation of primordial black holes. , 1979 .
[470] T. Weekes,et al. Upper limits for γ-ray bursts from primordial black holes , 1979, Nature.
[471] S. Abraham. Author index , 1978, Heredity.
[472] R. Henriksen,et al. Self-similar growth of primordial black holes. II. General sound speed , 1978 .
[473] S. Miyama,et al. An Upper Bound on the Number Density of Primordial Black Holes from the Big Bang Nucleosynthesis , 1978 .
[474] R. Henriksen,et al. Self-similar growth of primordial black holes. I. Stiff equation of state. , 1978 .
[475] B. Carr. Some cosmological consequences of primordial black-hole evaporations , 1976 .
[476] S. Hawking,et al. Gamma rays from primordial black holes , 1976 .
[477] D. Page. Particle emission rates from a black hole: Massless particles from an uncharged, nonrotating hole , 1976 .
[478] B. Carr. The Primordial black hole mass spectrum , 1975 .
[479] G. Chapline,et al. Cosmological effects of primordial black holes , 1975, Nature.
[480] S. Hawking,et al. Black Holes in the Early Universe , 1974 .
[481] S. Hawking,et al. Black hole explosions? , 1974, Nature.
[482] M. P. Ryan,et al. Was the Tungus Event due to a Black Hole? , 1973, Nature.
[483] Stephen W. Hawking,et al. Gravitationally collapsed objects of very low mass , 1971 .
[484] S. Bergh. Collapsed Objects in Clusters of Galaxies , 1969, Nature.
[485] F. Hoyle,et al. On the formation of elliptical galaxies* , 1966, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[486] R. Stephenson. A and V , 1962, The British journal of ophthalmology.
[487] R. Adams. Proceedings , 1947, Quarterly Journal of the Geological Society of London.
[488] OUP accepted manuscript , 2020, Monthly Notices of the Royal Astronomical Society.
[489] P. K. Panda,et al. UvA-DARE (Digital Academic Properties and Astrophysical Implications of the 150 M⊙ Binary Black Hole Merger GW190521 , 2020 .
[490] P. K. Panda,et al. GW190814: Gravitational Waves from the Coalescence of a 23 Solar Mass Black Hole with a 2.6 Solar Mass Compact Object , 2020 .
[491] W. Hager,et al. and s , 2019, Shallow Water Hydraulics.
[492] C. A. Oxborrow,et al. Planck 2013 results Special feature Planck 2013 results . XXV . Searches for cosmic strings and other topological defects , 2014 .
[493] W. Marsden. I and J , 2012 .
[494] T. Harada,et al. BRIEF REVIEW: Can a primordial black hole or wormhole grow as fast as the universe? , 2010 .
[495] Juan Carlos Hidalgo-Cuellar. Primordial black holes in non-linear perturbation theory , 2009 .
[496] V. Petkov,et al. Constraints on the number density of evaporating primordial black holes for the chromospheric evaporation models , 2008 .
[497] Samuel Harvey Moseley,et al. New Measurements of Cosmic Infrared Background Fluctuations from Early Epochs , 2006 .
[498] I. V. Moskalenko,et al. A New Determination of the Extragalactic Diffuse Gamma-ray Background from Egret Data , 2004 .
[500] V. I. Khvostenko et al., “Resonant capture of low-energy electrons by molecules of phthalide derivatives” [JETP Lett. 64, 439 (1996)] , 1996 .
[501] Barrow. Gravitational memory? , 1992, Physical review. D, Particles and fields.
[502] John D. Barrow,et al. Primordial density fluctuations and the microwave background spectrum , 1991 .
[503] Weinberg,et al. Dynamical fate of wide binaries in the solar neighborhood , 1987 .
[504] S. Hawking. Particle creation by black holes , 1976 .
[505] S. Hawking. Particle creation by black holes , 1975 .
[506] P. Michael,et al. Is the Existence of a Galaxy Evidence for a Black Hole at its Center , 1972 .
[507] ournal of C osmology and A stroparticle hysics Primordial black hole constraints with large extra dimensions , 2022 .
[508] ournal of C osmology and A stroparticle hysics J Constraining the local burst rate density of primordial black holes with HAWC , 2022 .
[509] I. Miyazaki,et al. AND T , 2022 .