论文标题
通过模板库搜索可检测到亚磨性质量中子星星
Detectability of Sub-Solar Mass Neutron Stars Through a Template Bank Search
论文作者
论文摘要
我们通过当前的地面重力波探测器研究了从亚磨性二进制中子恒星系统中重力波信号的可检测性。我们发现,中子星和较低的合并频率的大潮汐变形能力的有限尺寸影响可以显着影响探测器对这些来源的敏感性。通过使用注射的二进制中子星形信号模拟基于匹配的滤波器的搜索,该信号具有从身体动机的状态方程中得出的潮汐变形,我们计算了检测器灵敏度的降低。我们得出的结论是,对于使用二进制黑洞模板库进行的搜索,敏感体积的损失可能高达$ 78.4 \%$ $ $ $ $ $ $ $ 0.17 \,\ textrm {m} _ {\ odot} $。我们在敏感体积中使用了这种损失,结合了搜索对Ligo-Virgo天文台在前三个观测跑期间收集的数据进行的亚晶体质量二进制文件的结果,从而获得了对亚磨度的质量质量二进制二进制二元中性星星的合并率的保守上限。由于发现低质量的中子恒星将为中子星的形成机理提供新的见解,并进一步限制了密集核物质状态的方程,因此我们的结果值得一提,以专门搜索亚极质量二进制二进制中子星信号。
We study the detectability of gravitational-wave signals from sub-solar mass binary neutron star systems by the current generation of ground-based gravitational-wave detectors. We find that finite size effects from large tidal deformabilities of the neutron stars and lower merger frequencies can significantly impact the sensitivity of the detectors to these sources. By simulating a matched-filter based search using injected binary neutron star signals with tidal deformabilities derived from physically motivated equations of state, we calculate the reduction in sensitivity of the detectors. We conclude that the loss in sensitive volume can be as high as $78.4 \%$ for an equal mass binary system of chirp mass $0.17 \, \textrm{M}_{\odot}$, in a search conducted using binary black hole template banks. We use this loss in sensitive volume, in combination with the results from the search for sub-solar mass binaries conducted on data collected by the LIGO-Virgo observatories during their first three observing runs, to obtain a conservative upper limit on the merger rate of sub-solar mass binary neutron stars. Since the discovery of a low-mass neutron star would provide new insight into formation mechanisms of neutron stars and further constrain the equation of state of dense nuclear matter, our result merits a dedicated search for sub-solar mass binary neutron star signals.