论文标题

具有逼真的热和旋转曲线的中子星级残留物的轴对称模型

Axisymmetric models for neutron star merger remnants with realistic thermal and rotational profiles

论文作者

Camelio, Giovanni, Dietrich, Tim, Rosswog, Stephan, Haskell, Brynmor

论文摘要

预计中子恒星将在快速差异旋转中产生热的,可稳定的残余物,随后冷却并演变成刚性旋转的中子星或塌陷为黑洞。研究这一亚稳态及其进一步的进化对于从这种合并中的电磁,中微子和重力信号的预测和解释至关重要。在这项工作中,我们对二进制中子恒星合并残留物进行了建模,并提出了描述合并后残留物的新旋转和热定律。我们的框架能够为状态,旋转和温度剖面的通用方程(包括非Barotropic oviles)复制准平衡构型。我们证明了我们的结果与有关质量,角动量和大量积聚磁盘的形成等散装残余特性(例如块状残余特性)的数值相对性模拟一致。由于与完整的3+1维模拟相比,我们的轴对称代码的计算成本低,因此我们可以对二进制中性恒星残留参数空间进行广泛的探索,这些二进制中子恒星残留参数空间研究了数十万个状态方程的配置。

Merging neutron stars are expected to produce hot, metastable remnants in rapid differential rotation, which subsequently cool and evolve into rigidly rotating neutron stars or collapse to black holes. Studying this metastable phase and its further evolution is essential for the prediction and interpretation of the electromagnetic, neutrino, and gravitational signals from such a merger. In this work, we model binary neutron star merger remnants and propose new rotation and thermal laws that describe post-merger remnants. Our framework is capable to reproduce quasi-equilibrium configurations for generic equations of state, rotation and temperature profiles, including nonbarotropic ones. We demonstrate that our results are in agreement with numerical relativity simulations concerning bulk remnant properties like the mass, angular momentum, and the formation of a massive accretion disk. Because of the low computational cost for our axisymmetric code compared to full 3+1-dimensional simulations, we can perform an extensive exploration of the binary neutron star remnant parameter space studying several hundred thousand configurations for different equation of states.

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