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[1] M. Catelán,et al. Pulsating Stars , 1942, Science.
[2] P. Murdin,et al. Cygnus X-1—a Spectroscopic Binary with a Heavy Companion ? , 1972, Nature.
[3] Anthony Mezzacappa,et al. ASCERTAINING THE CORE COLLAPSE SUPERNOVA MECHANISM: The State of the Art and the Road Ahead , 2005 .
[4] James R. Wilson,et al. Convection in core collapse supernovae , 1988 .
[5] C. Kochanek,et al. The search for failed supernovae with the Large Binocular Telescope: confirmation of a disappearing star , 2016, 1609.01283.
[6] Enrico Ramirez-Ruiz,et al. Origin of the heavy elements in binary neutron-star mergers from a gravitational-wave event , 2017, Nature.
[7] E. L. Robinson,et al. On the mass of the compact object in the black hole binary A0620-00 , 1993 .
[8] V. Usov. Stellar wind collision and dust formation in long-period, heavily interacting Wolf-Rayet binaries. , 1991 .
[10] T. Sakamoto,et al. The X-ray counterpart to the gravitational-wave event GW170817 , 2017, Nature.
[11] Francis Timmes,et al. Integration of Nuclear Reaction Networks for Stellar Hydrodynamics , 1999 .
[12] E. Salpeter. The Luminosity function and stellar evolution , 1955 .
[13] J. Foster,et al. A short course in general relativity , 1979 .
[14] R. Reifarth,et al. Neutron Reactions in Astrophysics , 2014, 1403.5670.
[15] C. Waltham. Teaching neutrino oscillations , 2004 .
[16] C. Cardall. Supernova neutrinos , 2007, astro-ph/0703334.
[17] H. Janka. Explosion Mechanisms of Core-Collapse Supernovae , 2012, 1206.2503.
[18] William H. Lee. Newtonian hydrodynamics of the coalescence of black holes with neutron stars - IV. Irrotational binaries with a soft equation of state , 1999 .
[19] J. McClintock,et al. The Black Hole Binary A0620-00 , 1986 .
[20] A. M. Mathai,et al. On Thermonuclear Reaction Rates , 1996, astro-ph/9612011.
[21] S. Schramm,et al. Proto-Neutron and Neutron Stars in a Chiral SU(3) Model , 2008, 0802.1999.
[22] Achim Weiss,et al. Stellar Structure and Evolution , 1990 .
[23] M. Benacquista,et al. Relativistic Binaries in Globular Clusters , 2002, Living reviews in relativity.
[24] A. Serenelli,et al. Solar Neutrinos: Status and Prospects , 2012, 1208.5723.
[25] O. E. Bronson Messer,et al. Gravitational waves from core collapse supernovae , 2010, Classical and Quantum Gravity.
[26] F.-K. Thielemann,et al. Neutron Star Mergers and Nucleosynthesis of Heavy Elements , 2017, 1710.02142.
[27] J. H. Taylor,et al. A new test of general relativity - Gravitational radiation and the binary pulsar PSR 1913+16 , 1982 .
[28] D. Mei,et al. The Hardness-Duration Correlation in the Two Classes of Gamma-Ray Bursts , 2000, astro-ph/0005005.
[29] A. Smirnov,et al. Neutrino Propagation in Matter , 2013, 1306.2903.
[30] G. Ricker,et al. Periodic variability of the X-ray nova A 0620-00 in quiescence , 1983 .
[31] E. L. Robinson,et al. Spectroscopy of $A0620-00$: the mass of the black hole and an image of its accretion disc , 1994 .
[32] Pierre Brassard,et al. Asteroseismology of the Crystallized ZZ Ceti Star BPM 37093: A Different View , 2005 .
[33] Kei Kotake,et al. Multiple physical elements to determine the gravitational-wave signatures of core-collapse supernovae , 2011, 1110.5107.
[34] B. Punsly,et al. Simulations of Jets Driven by Black Hole Rotation , 2004, Science.
[35] J. Frieman,et al. Dark Energy and the Accelerating Universe , 2008, 0803.0982.
[36] A. Abbott. Hungary rewards highly cited scientists with bonus grants , 2017, Nature.
[37] N. Gehrels,et al. Revisiting the Black Hole , 1999 .
[38] W. Haxton,et al. Neutrino Physics , 1999, hep-ph/9905257.
[39] I. Iben. Stellar Evolution Within and Off the Main Sequence , 1967 .
[40] L. Bonolis. Bruno Pontecorvo: From slow neutrons to oscillating neutrinos , 2005 .
[41] S. Ransom,et al. A Radio Pulsar Spinning at 716 Hz , 2006, Science.
[42] John N. Bahcall,et al. Solar Models: Current Epoch and Time Dependences, Neutrinos, and Helioseismological Properties , 2001 .
[43] John P. Cox,et al. Theory of Stellar Pulsation No. 2 , 1980 .
[44] M. Asplund,et al. The chemical composition of the Sun , 2009, 0909.0948.
[45] M. Guidry. Modern General Relativity , 1970 .
[46] I. Mandel,et al. Formation of the first three gravitational-wave observations through isolated binary evolution , 2017, Nature communications.
[47] 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.
[48] R. Paul Butler,et al. DETECTION OF EXTRASOLAR GIANT PLANETS , 1998 .
[49] James Binney,et al. Galactic Dynamics: Second Edition , 2008 .
[50] F. Thielemann,et al. Astrophysical reaction rates from statistical model calculations , 2000, astro-ph/0004059.
[51] G. Wasserburg,et al. Nucleosynthesis in asymptotic giant branch stars: Relevance for galactic enrichment and solar system formation , 1999 .
[52] James R. Wilson,et al. Revival of a stalled supernova shock by neutrino heating , 1985 .
[53] B. Carney,et al. The physics of stars , 1994 .
[54] P. Garnavich,et al. The Optical Spectroscopic Evolution of V1974 Cygni (Nova Cygni 1992) , 2000, astro-ph/0012241.
[55] Mike Guidry,et al. Gauge field theories : an introduction with applications , 1991 .
[56] Donald F. Figer. An upper limit to the masses of stars , 2005, Nature.
[57] S. Kimeswenger,et al. The Real-Time Stellar Evolution of Sakurai's Object , 2005, Science.
[58] Neutrino physics: An update , 2003, hep-ph/0306282.
[59] Mark E. Cornell,et al. A New Library of Stellar Optical Spectra , 1992 .
[60] E. Squires,et al. Particle Physics and Cosmology: COLLINS:PARTICLE PHYSICS O-BK , 2005 .
[61] M. Guidry. The promising dawn of multimessenger astronomy. , 2017, Science bulletin.
[62] Nathan Smith. Mass Loss: Its Effect on the Evolution and Fate of High-Mass Stars , 2014 .
[63] B. Shylaja,et al. Stellar masses , 2002 .
[64] M. Wiescher,et al. Explosive hydrogen burning , 1992 .
[65] K. Pedersen,et al. A very energetic supernova associated with the γ-ray burst of 29 March 2003 , 2003, Nature.
[66] Abundance stratification in Type Ia supernovae - I. The case of SN 2002bo , 2004, astro-ph/0409342.
[67] Richard H. Price,et al. Black Holes , 1997 .
[68] K. Postnov,et al. The Evolution of Compact Binary Star Systems , 2006, Living reviews in relativity.
[69] J. Lattimer,et al. The Physics of Neutron Stars , 2004, Science.
[70] K. Menten,et al. A star in a 15.2-year orbit around the supermassive black hole at the centre of the Milky Way , 2002, Nature.
[71] M. Phillips,et al. Supernova 1987 A , 1989 .
[72] Stephan Rosswog,et al. Short Gamma-Ray Bursts , 2004, Science.
[73] L. Braes,et al. Physical Sciences: Detection of Radio Emission from Cygnus X-1 , 1971, Nature.
[74] A. Loeb,et al. An intermediate-mass black hole in the centre of the globular cluster 47 Tucanae , 2017, Nature.
[75] Alexander G. G. M. Tielens,et al. Interstellar Polycyclic Aromatic Hydrocarbon Molecules , 2008 .
[76] Saul A. Teukolsky,et al. Black Holes, White Dwarfs, and Neutron Stars , 1983 .
[77] Astronomy,et al. Superfluid Neutrons in the Core of the Neutron Star in Cassiopeia A , 2011, 1110.5116.
[78] K. Kotake,et al. Gravitational Radiation from Standing Accretion Shock Instability in Core-Collapse Supernovae , 2006, astro-ph/0607224.
[79] P. Schipani,et al. Spectroscopic identification of r-process nucleosynthesis in a double neutron-star merger , 2017, Nature.
[80] Seattle,et al. Stellar Superfluids , 2013, 1302.6626.
[81] Richard H. White,et al. The Hydrodynamic Behavior of Supernovae Explosions , 1964 .
[82] J. B. Oke. Further spectrophotometry of the transient X-ray source A0620-00 , 1977 .
[83] A. MacFadyen,et al. Long Gamma-Ray Bursts , 2004, Science.
[84] Nicholas R. J. Lawrance,et al. The Prototype Colliding-Wind Pinwheel WR 104 , 2007, 0712.2111.
[85] Forrest J. Rogers,et al. Spin-Orbit Interaction Effects on the Rosseland Mean Opacity , 1992 .
[86] B. Schutz. Determining the Hubble constant from gravitational wave observations , 1986, Nature.
[87] Mike Guidry,et al. Algebraic stabilization of explicit numerical integration for extremely stiff reaction networks , 2011, J. Comput. Phys..
[88] C. Kim,et al. An increased estimate of the merger rate of double neutron stars from observations of a highly relativistic system , 2003, Nature.
[89] R. Lynch,et al. A millisecond pulsar in a stellar triple system , 2014, Nature.
[90] P. Giommi,et al. A short γ-ray burst apparently associated with an elliptical galaxy at redshift z = 0.225 , 2005, Nature.
[91] S. Kawaler,et al. A Strong Test of Electroweak Theory Using Pulsating DB White Dwarf Stars as Plasmon Neutrino Detectors , 2003, astro-ph/0312303.
[92] S. King,et al. Neutrino mass and mixing with discrete symmetry , 2013, Reports on progress in physics. Physical Society.
[93] Miguel Alcubierre,et al. Introduction to 3+1 Numerical Relativity , 2008 .
[94] Robert B. Leighton,et al. VELOCITY FIELDS IN THE SOLAR ATMOSPHERE. I. PRELIMINARY REPORT , 1962 .
[95] Francesco Palla,et al. The Formation of Stars , 2005 .
[96] R. Giacconi,et al. X-Ray Pulsations from Cygnus X-1 Observed from UHURU , 1971 .
[97] E. Salpeter,et al. Energy Losses due to Neutrino Processes , 1967 .
[98] S. Cassisi,et al. Evolution of Stars and Stellar Populations: Salaris/Evolution of Stars and Stellar Populations , 2006 .
[99] A. M. Cruise,et al. Sirius B: A New, More Accurate View , 1998 .
[100] THE EFFECT OF CRYSTALLIZATION ON THE PULSATIONS OF WHITE DWARF STARS , 1999, astro-ph/9907040.
[101] Stellar Interiors , 2020, Foundations of Astrophysics.
[102] F. Rogers,et al. Radiative atomic Rosseland mean opacity tables , 1992 .
[103] S Rosswog,et al. Producing Ultrastrong Magnetic Fields in Neutron Star Mergers , 2006, Science.
[104] E. Berger. Short-Duration Gamma-Ray Bursts , 2013, 1311.2603.
[105] M. H. Montgomery,et al. Testing White Dwarf Crystallization Theory with Asteroseismology of the Massive Pulsating DA Star BPM 37093 , 2004, astro-ph/0402046.
[106] M. Phillips,et al. The energy sources powering the late-time bolometric evolution of SN 1987A , 1992 .
[107] S. Bowyer,et al. Cosmic X-ray Sources , 1965, Science.
[108] William C. Danchi,et al. A dusty pinwheel nebula around the massive star WR104 , 1999, Nature.
[109] Alexei V. Filippenko,et al. Optical spectra of supernovae , 1997 .
[110] J. Bahcall. Neutrinos from the Sun , 1969 .