论文标题

相变发作对二元中子星星合并的影响

Effects of Onset of Phase Transition on Binary Neutron Star Mergers

论文作者

Haque, Shamim, Mallick, Ritam, Thakur, Shashikesh Kumar

论文摘要

量子染色体动力学预测,从辐射物质到夸克物质的相变高,这在二进制中子星星等天体物理系统中很可能。为了探索可能发生这种相变的临界密度,我们对具有各种质量(相等和不平等二进制的二进制中子星星合并)进行了数值相对性模拟。我们的目的是了解相变发作对合并动力学和重力波谱的影响。我们通过不稳定地改变了相变的开始,生成了一组状态方程,并具有固定的辐射零件和夸克物质部分。国家方程式的这种特殊安排探讨了合并之前或合并期间实现物质混合阶段的合并情景。在这种情况下,如果具有强化和夸克学位的物质特性有很大差异,则它反映在中间质量二进制的最终合并产品的稳定性中。我们对混合物种合并进行了案例研究,其中二元同伴之一是混合恒星。如果夸克物质在低密度下出现,我们会观察到合并后重力波分析的显着变化,而较高的峰值频率和功率频谱密度的合并后频率。我们报告了混合合并时的合并时间相差图表示的指示。我们发现,与具有相同的总重子质量相同的质量二进制,相结合引力波信号中相变的表达对于不等的质量二元而言更为重要。

Quantum Chromodynamics predicts phase transition from hadronic matter to quark matter at high density, which is highly probable in astrophysical systems like binary neutron star mergers. To explore the critical density where such phase transition can occur, we performed numerical relativity simulations of binary neutron star mergers with various masses (equal and unequal binaries). We aim to understand the effect of the onset of phase transition on the merger dynamics and gravitational wave spectra. We generated a set of equations of states by agnostically changing the onset of phase transition, having the hadronic matter part and quark matter part fixed. This particular arrangement of the equation of states explores the scenario of mergers where mixed phases of matter are achieved before or during the merger. Under these circumstances, if the matter properties with hadronic and quark degrees differ significantly, it is reflected in the stability of the final merger product for the intermediate mass binary. We performed a case study on mixed species merger, where one of the binary companions is hybrid star. If quark matter appears at low densities, we observe significant change in post-merger gravitational wave analysis in terms of higher peak frequencies and post-merger frequencies in power spectral density. We report indications expressed as spikes in phase difference plots at merger time for mixed mergers. We found that the expression of phase transition in post-merger gravitational wave signals is more significant for unequal mass binary than for equal mass binary having the same total baryonic mass.

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