Parameter estimation for strong phase transitions in supranuclear matter using gravitational-wave astronomy

P. T. Pang, T. Dietrich, I. Tews, C. Van den Broeck
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引用次数: 12

Abstract

At supranuclear densities, explored in the core of neutron stars, a strong phase transition from hadronic matter to more exotic forms of matter might be present. To test this hypothesis, binary neutron-star mergers offer a unique possibility to probe matter at densities that we can not create in any existing terrestrial experiment. In this work, we show that, if present, strong phase transitions can have a measurable imprint on the binary neutron-star coalescence and the emitted gravitational-wave signal. We construct a new parameterization of the supranuclear equation of state that allows us to test for the existence of a strong phase transition and extract its characteristic properties purely from the gravitational-wave signal of the inspiraling neutron stars. We test our approach using a Bayesian inference study simulating 600 signals with three different equations of state and find that for current gravitational-wave detector networks already twelve events might be sufficient to verify the presence of a strong phase transition. Finally, we use our methodology to analyze GW170817 and GW190425, but do not find any indication that a strong phase transition is present at densities probed during the inspiral.
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基于引力波天文学的超核物质强相变参数估计
在中子星核心探索的超核密度下,可能存在从强子物质到更奇特形式物质的强烈相变。为了验证这一假设,双中子星合并提供了一种独特的可能性,可以探测到我们在任何现有的陆地实验中都无法创造的密度。在这项工作中,我们表明,如果存在,强相变可以对双中子星合并和发射的引力波信号产生可测量的印记。我们构造了一个新的超核状态方程参数化方法,使我们能够检验强相变的存在性,并纯粹从中子星的引力波信号中提取其特征性质。我们使用贝叶斯推理研究来测试我们的方法,该研究模拟了600个具有三种不同状态方程的信号,并发现对于当前的引力波探测器网络来说,已经有12个事件可能足以验证强相变的存在。最后,我们使用我们的方法分析了GW170817和GW190425,但没有发现任何迹象表明在吸气期间探测的密度存在强烈的相变。
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