Maximum mass cutoff in the neutron star mass distribution and the prospect of forming supramassive objects in the double neutron star mergers

被引:33
|
作者
Shao, Dong-Sheng
Tang, Shao-Peng
Jiang, Jin-Liang
Fan, Yi-Zhong [1 ]
机构
[1] Chinese Acad Sci, Purple Mt Observ, Key Lab Dark Matter & Space Astron, Nanjing 210033, Peoples R China
关键词
EQUATION-OF-STATE; MEAN-FIELD THEORY; BINARY PULSAR; WHITE-DWARF; MILLISECOND PULSAR; GROUND-STATE; MATTER; SUPERNOVA; DISCOVERY; DENSITY;
D O I
10.1103/PhysRevD.102.063006
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The sample of neutron stars with a measured mass is growing quickly. With the latest sample, we adopt both a flexible Gaussian mixture model and a Gaussian plus Cauchy-Lorentz component model to infer the mass distribution of neutron stars and use the Bayesian model selection to explore evidence for multimodality and a sharp cutoff in the mass distribution. The two models yield rather similar results. Consistent with previous studies, we find evidence for a bimodal distribution together with a cutoff at a mass of M-max = 2.26(-0.05)(+0.12) M-circle dot (68% credible interval, for the Gaussian mixture model). If such a cutoff is interpreted as the maximum gravitational mass of nonrotating cold neutron stars, the prospect of forming supramassive remnants is found to be quite promising for the double neutron star mergers with a total gravitational mass less than or equal to 2.7 M-circle dot unless the thermal pions could substantially soften the equation of state for the very hot neutron star matter. These supramassive remnants have a typical kinetic rotational energy of approximately 1 - 2 x 10(53) ergs. Together with a high neutron star merger rate approximately 10(3) Gpc(-3) yr(-3), the neutron star mergers are expected to be significant sources of EeV (10(18) eV) cosmic-ray protons.
引用
收藏
页数:16
相关论文
共 50 条
  • [41] The impact of mass uncertainties on r-process nucleosynthesis in neutron star mergers
    Martinet, Sebastien
    Goriely, Stephane
    ASTRONOMY & ASTROPHYSICS, 2025, 694
  • [42] Neutron star crustal mass fractions
    Hoffman, Kelsey L.
    Heyl, Jeremy S.
    40 YEARS OF PULSARS: MILLISECOND PULSARS, MAGNETARS AND MORE, 2007, 983 : 388 - 390
  • [43] Black hole-neutron star mergers: The first mass gap and kilonovae
    Drozda, P.
    Belczynski, K.
    O'Shaughnessy, R.
    Bulik, T.
    Fryer, C. L.
    ASTRONOMY & ASTROPHYSICS, 2022, 667
  • [44] Signatures of low-mass black hole-neutron star mergers
    Matur, Rahime
    Hawke, Ian
    Andersson, Nils
    MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2024, 534 (03) : 2894 - 2903
  • [45] Double Neutron Star Mergers from Hierarchical Triple-star Systems
    Hamers, Adrian S.
    Thompson, Todd A.
    ASTROPHYSICAL JOURNAL, 2019, 883 (01):
  • [46] What if the neutron star maximum mass is beyond ∼2.3M⊙?
    Wu, X. H.
    Du, S.
    Xu, R. X.
    MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2020, 499 (03) : 4526 - 4533
  • [47] OBSERVATIONAL CONSTRAINTS ON THE NEUTRON-STAR MASS-DISTRIBUTION
    FINN, LS
    PHYSICAL REVIEW LETTERS, 1994, 73 (14) : 1878 - 1881
  • [48] Discriminating between Neutron Stars and Black Holes with Imperfect Knowledge of the Maximum Neutron Star Mass
    Essick, Reed
    Landry, Philippe
    ASTROPHYSICAL JOURNAL, 2020, 904 (01):
  • [49] The heavier the better: how to constrain mass ratios and spins of high-mass neutron star mergers
    Most, Elias R.
    Weih, Lukas R.
    Rezzolla, Luciano
    MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2020, 496 (01) : L16 - L21
  • [50] Remnant baryon mass in neutron star-black hole mergers: Predictions for binary neutron star mimickers and rapidly spinning black holes
    Foucart, Francois
    Hinderer, Tanja
    Nissanke, Samaya
    PHYSICAL REVIEW D, 2018, 98 (08)