Equation of state of neutron star matter and its warm extension with an interacting hadron resonance gas
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[1] I. Cognard,et al. The Radius of PSR J0740+6620 from NICER and XMM-Newton Data , 2021, The Astrophysical Journal Letters.
[2] G. Burgio,et al. Neutron stars and the nuclear equation of state , 2021, 2105.03747.
[3] T. E. Riley,et al. A NICER View of the Massive Pulsar PSR J0740+6620 Informed by Radio Timing and XMM-Newton Spectroscopy , 2021, The Astrophysical Journal Letters.
[4] Y. Hidaka,et al. Deconfining phase boundary of rapidly rotating hot and dense matter and analysis of moment of inertia , 2021, Physics Letters B.
[5] K. Fukushima,et al. Equation of state of cold and dense QCD matter in resummed perturbation theory , 2020, Physical Review D.
[6] Tianqi Zhao,et al. Limiting masses and radii of neutron stars and their implications , 2020, 2009.06441.
[7] W. Weise,et al. Hard-core deconfinement and soft-surface delocalization from nuclear to quark matter , 2020, Physical Review D.
[8] D. Duarte,et al. Excluded-volume model for quarkyonic matter: Three-flavor baryon-quark mixture , 2020 .
[9] D. Duarte,et al. Excluded-volume model for quarkyonic matter. II. Three-flavor shell-like distribution of baryons in phase space , 2020, 2007.08098.
[10] J. Liao,et al. A field theoretical model for quarkyonic matter , 2020, Journal of High Energy Physics.
[11] G. Burgio,et al. Hybrid equation of state approach in binary neutron-star merger simulations , 2020, 2005.08691.
[12] Tianqi Zhao,et al. Quarkyonic matter equation of state in beta-equilibrium , 2020, Physical Review D.
[13] J. Melendez,et al. How Well Do We Know the Neutron-Matter Equation of State at the Densities Inside Neutron Stars? A Bayesian Approach with Correlated Uncertainties. , 2020, Physical review letters.
[14] V. Vovchenko. Hadron resonance gas with van der Waals interactions , 2020, 2004.06331.
[15] H. Tajima,et al. BCS–BEC crossover in cold atomic and in nuclear systems , 2020 .
[16] N. Warrington,et al. Finite-temperature quarkyonic matter with an excluded volume model , 2020, 2002.11133.
[17] M. Dutra,et al. Constraints and correlations of nuclear matter parameters from a density-dependent van der Waals model , 2020, 2002.02437.
[18] Keith C. Gendreau,et al. A NICER View of PSR J0030+0451: Millisecond Pulsar Parameter Estimation , 2019, The Astrophysical Journal.
[19] W. Ho,et al. PSR J0030+0451 Mass and Radius from NICER Data and Implications for the Properties of Neutron Star Matter , 2019, The Astrophysical Journal.
[20] S. Reddy,et al. Pions in hot dense matter and their astrophysical implications , 2019, Physical Review C.
[21] W. Weise,et al. Continuity from neutron matter to two-flavor quark matter with S01 and P23 superfluidity , 2019, 1908.09360.
[22] M. Dutra,et al. A Density-dependent van der Waals Model under the GW170817 Constraint , 2019, The Astrophysical Journal.
[23] S. Sen,et al. Dynamical Derivation of the Momentum Space Shell Structure for Quarkyonic Matter , 2019, 1908.04799.
[24] O. Philipsen,et al. QCD in the heavy dense regime for general Nc: on the existence of quarkyonic matter , 2019, Journal of High Energy Physics.
[25] A. Schwenk,et al. Ab initio constraints on thermal effects of the nuclear equation of state , 2019, Physical Review C.
[26] A. Vuorinen,et al. Evidence for quark-matter cores in massive neutron stars , 2019, Nature Physics.
[27] G. Baym,et al. New Neutron Star Equation of State with Quark–Hadron Crossover , 2019, The Astrophysical Journal.
[28] B. Schenke,et al. Equation of state at finite densities for QCD matter in nuclear collisions , 2019, Physical Review C.
[29] A. Schwenk,et al. Equation of State Effects in Core-Collapse Supernovae. , 2018, Physical review letters.
[30] L. Mclerran,et al. Quarkyonic Matter and Neutron Stars. , 2018, Physical review letters.
[31] M. Ruiz,et al. GW170817, general relativistic magnetohydrodynamic simulations, and the neutron star maximum mass. , 2017, Physical review. D..
[32] L. Rezzolla,et al. Using Gravitational-wave Observations and Quasi-universal Relations to Constrain the Maximum Mass of Neutron Stars , 2017, 1711.00314.
[33] A. Andronic,et al. Decoding the phase structure of QCD via particle production at high energy , 2017, Nature.
[34] Yuichiro Sekiguchi,et al. Modeling GW170817 based on numerical relativity and its implications , 2017, 1710.07579.
[35] B. Metzger,et al. Constraining the Maximum Mass of Neutron Stars from Multi-messenger Observations of GW170817 , 2017, 1710.05938.
[36] K. Redlich,et al. S-matrix analysis of the baryon electric charge correlation , 2017, 1710.02711.
[37] A. Ohnishi,et al. Superfluid Fermi atomic gas as a quantum simulator for the study of the neutron-star equation of state in the low-density region , 2017, 1709.03279.
[38] H. Stoecker,et al. Multicomponent van der Waals equation of state: Applications in nuclear and hadronic physics , 2017, 1707.09215.
[39] K. Redlich,et al. Repulsive interactions and their effects on the thermodynamics of a hadron gas , 2017, 1703.00306.
[40] V. Vovchenko. Equations of state for real gases on the nuclear scale , 2017, 1701.06524.
[41] S. Sharma,et al. QCD equation of state to O(mu(6)(B)) from lattice QCD , 2017, 1701.04325.
[42] K. Kanaya,et al. Equation of state in (2+1)-flavor QCD with gradient flow , 2016, 1610.09518.
[43] H. Stoecker,et al. New scenarios for hard-core interactions in a hadron resonance gas , 2016, 1610.08753.
[44] H. Stoecker,et al. van der Waals Interactions in Hadron Resonance Gas: From Nuclear Matter to Lattice QCD. , 2016, Physical review letters.
[45] K. Zalewski,et al. Thermodynamics of Van der Waals Fluids with quantum statistics , 2016, 1605.09686.
[46] Y. Hidaka,et al. Magnetic Shift of the Chemical Freeze-out and Electric Charge Fluctuations. , 2016, Physical review letters.
[47] T. Kojo,et al. THE QUARKYONIC STAR , 2015, 1509.00356.
[48] H. Ding,et al. Diagonal and off-diagonal quark number susceptibilities at high temperatures , 2015, 1507.06637.
[49] V. Vovchenko,et al. Van der Waals Equation of State with Fermi Statistics for Nuclear Matter , 2015, 1504.01363.
[50] V. Vovchenko,et al. Particle number fluctuations for the van der Waals equation of state , 2015, 1501.03785.
[51] V. Vovchenko,et al. Mean-field approach in the multi-component gas of interacting particles applied to relativistic heavy-ion collisions , 2014, 1411.1444.
[52] K. Bugaev,et al. Equation of state and sound velocity of a hadronic gas with a hard-core interaction , 2014, 1411.0959.
[53] K. Fukushima. Hadron resonance gas and mean-field nuclear matter for baryon number fluctuations , 2014, 1409.0698.
[54] Z. Fodor,et al. Full result for the QCD equation of state with 2+1 flavors , 2013, 1309.5258.
[55] K. Hotokezaka,et al. Remnant massive neutron stars of binary neutron star mergers: Evolution process and gravitational waveform , 2013, 1307.5888.
[56] T. Hatsuda,et al. HADRON–QUARK CROSSOVER AND MASSIVE HYBRID STARS WITH STRANGENESS , 2012, 1205.3621.
[57] G. Torrieri,et al. Quarkyonic percolation and deconfinement at finite density and number of colors , 2012, 1204.3272.
[58] C. DeTar,et al. Fluctuations and Correlations of net baryon number, electric charge, and strangeness: A comparison of lattice QCD results with the hadron resonance gas model , 2012, 1203.0784.
[59] A. Andronic,et al. Interacting hadron resonance gas meets lattice QCD , 2012, 1201.0693.
[60] L. Mclerran,et al. Interweaving chiral spirals , 2011, 1107.2124.
[61] H. Janka,et al. Testing approximations of thermal effects in neutron star merger simulations , 2010, 1006.3315.
[62] G. Torrieri,et al. Nuclear liquid-gas phase transition at large N{sub c} in the van der Waals approximation , 2010, 1006.2471.
[63] L. Mclerran,et al. Quarkyonic chiral spirals , 2009, 0912.3800.
[64] L. Mclerran,et al. Hadron production in ultra-relativistic nuclear collisions: Quarkyonic matter and a triple point in the phase diagram of QCD , 2009, 0911.4806.
[65] L. Mclerran,et al. Phases of cold, dense quarks at large N(c) , 2007, 0706.2191.
[66] T. Hatsuda,et al. Nuclear Force from Lattice QCD , 2006, hep-lat/0610002.
[67] J. Cleymans,et al. THERMUS - A thermal model package for ROOT , 2004, Comput. Phys. Commun..
[68] P. Haensel,et al. A unified equation of state of dense matter and neutron star structure , 2001, astro-ph/0111092.
[69] H. Janka,et al. Does artificial viscosity destroy prompt type-II supernova explosions? , 1993 .
[70] H. Stöcker,et al. Excluded volume effect for the nuclear matter equation of state , 1991 .
[71] R. Hagedorn,et al. Hot hadronic matter and nuclear collisions , 1980 .
[72] R. Wagoner,et al. Gravitation and Cosmology: Principles and Applications of the General Theory of Relativity , 1973 .
[73] K. E. Starling,et al. Equation of State for Nonattracting Rigid Spheres , 1969 .
[74] A. Vuorinen,et al. Quark-matter cores in neutron stars , 2019 .
[75] R. Hagedorn,et al. Statistical thermodynamics of strong interactions at high-energies. 2. Momentum spectra of particles produced in pp-collisions , 1965 .