Bauswein Andreas, Blacker Sebastian, Vijayan Vimal, Stergioulas Nikolaos, Chatziioannou Katerina, Clark James A, Bastian Niels-Uwe F, Blaschke David B, Cierniak Mateusz, Fischer Tobias
GSI Helmholtzzentrum für Schwerionenforschung, Planckstraße 1, 64291 Darmstadt, Germany.
Institut für Kernphysik, Technische Universität Darmstadt, 64289 Darmstadt, Germany.
Phys Rev Lett. 2020 Oct 2;125(14):141103. doi: 10.1103/PhysRevLett.125.141103.
Using hydrodynamical simulations for a large set of high-density matter equations of state (EOSs), we systematically determine the threshold mass M_{thres} for prompt black-hole formation in equal-mass and asymmetric neutron star (NS) mergers. We devise the so far most direct, general, and accurate method to determine the unknown maximum mass of nonrotating NSs from merger observations revealing M_{thres}. Considering hybrid EOSs with hadron-quark phase transition, we identify a new, observable signature of quark matter in NS mergers. Furthermore, our findings have direct applications in gravitational wave searches, kilonova interpretations, and multimessenger constraints on NS properties.
通过对大量高密度物质状态方程(EOS)进行流体动力学模拟,我们系统地确定了等质量和不对称中子星(NS)合并中迅速形成黑洞的阈值质量(M_{thres})。我们设计了迄今为止最直接、通用且准确的方法,通过揭示(M_{thres})的合并观测来确定非旋转中子星未知的最大质量。考虑到具有强子 - 夸克相变的混合EOS,我们在中子星合并中识别出一种新的、可观测的夸克物质特征。此外,我们的发现直接应用于引力波搜索、千新星解释以及对中子星性质的多信使约束。