论文标题

恒星质量黑孔形成的状态和祖细胞依赖性方程

Equation of State and Progenitor Dependence of Stellar-Mass Black-Hole Formation

论文作者

Schneider, A. S., O'Connor, E., Granqvist, E., Betranhandy, A., Couch, S. M.

论文摘要

巨大恒星的核心崩溃导致形成原始的无体恒星(PNS)。如果将足够的材料积聚到PNS上,它将在重力上不稳定,并进一步塌陷成黑洞(BH)。我们对球形对称性中的核心偏曲超新星进行了系统的研究,用于针对核物质的各种前祖祖细胞和状态方程(EOSS)。我们分析了祖细胞结构和核饱和密度高于核物质的EOS的变化如何影响PNS的演化和随后的BH形成。给定祖细胞星和不同的eoss的核心崩溃的比较表明,在质量 - 肠相空间中所追踪的路径$ m _ {\ mathrm {grav}}}^{\ mathrm {pns}}} - \ tilde {s} $与Progenitor Compacts compacts and solles and Ploteptiption complote and Ploteptional and Ploteptional section and Plotept and Obles complote。此外,在PNS克服最大\ textIt {引力}质量之后不久,BH形成是一个非常好的近似值。这些结果表明,通过检测失败的银河系超新星的中微子来限制EOS的温度依赖性的途径。

The core collapse of a massive star results in the formation of a proto-neutron star (PNS). If enough material is accreted onto a PNS it will become gravitationally unstable and further collapse into a black-hole (BH). We perform a systematic study of failing core-collapse supernovae in spherical symmetry for a wide range of presupernova progenitor stars and equations of state (EOSs) of nuclear matter. We analyze how variations in progenitor structure and the EOS of dense matter above nuclear saturation density affect the PNS evolution and subsequent BH formation. Comparisons of core-collapse for a given progenitor star and different EOSs show that the path traced by the PNS in mass-entropy phase space $M_{\mathrm{grav}}^{\mathrm{PNS}}-\tilde{s}$ is well correlated with the progenitor compactness and almost EOS independent, apart from the final endpoint. Furthermore, BH formation occurs, to a very good approximation, soon after the PNS overcomes the maximum \textit{gravitational} mass supported by a hot NS with constant entropy equal to $\tilde{s}$. These results show a path to constraining the temperature dependence of the EOS through the detection of neutrinos from a failed galactic supernova.

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