Numerical Simulations of Dark Matter Admixed Neutron Star Binaries

Mattia Emma, Federico Schianchi, F. Pannarale, V. Sagun, T. Dietrich
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引用次数: 9

Abstract

Multi-messenger observations of compact binary mergers provide a new way to constrain the nature of dark matter that may accumulate in and around neutron stars. In this article, we extend the infrastructure of our numerical-relativity code BAM to enable the simulation of neutron stars that contain an additional mirror dark matter component. We perform single star tests to verify our code and the first binary neutron star simulations of this kind. We find that the presence of dark matter reduces the lifetime of the merger remnant and favors a prompt collapse to a black hole. Furthermore, we find differences in the merger time for systems with the same total mass and mass ratio, but different amounts of dark matter. Finally, we find that electromagnetic signals produced by the merger of binary neutron stars admixed with dark matter are very unlikely to be as bright as their dark matter-free counterparts. Given the increased sensitivity of multi-messenger facilities, our analysis gives a new perspective on how to probe the presence of dark matter.
暗物质混合中子星双星的数值模拟
紧凑双星合并的多信使观测提供了一种新的方法来约束可能积聚在中子星内部和周围的暗物质的性质。在本文中,我们扩展了我们的数字相对论代码BAM的基础设施,使其能够模拟包含额外镜像暗物质组件的中子星。我们执行了单星测试来验证我们的代码和第一个这种双中子星模拟。我们发现暗物质的存在缩短了合并残留物的寿命,并有利于迅速坍缩成黑洞。此外,我们发现,对于总质量和质量比相同,但暗物质数量不同的系统,合并时间存在差异。最后,我们发现由混合暗物质的双中子星合并产生的电磁信号不太可能像不含暗物质的中子星那样明亮。考虑到多信使设施的灵敏度增加,我们的分析为如何探测暗物质的存在提供了一个新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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