论文标题

单个高级ligo探测器在揭示中子恒星特性中的作用

The roles of individual advanced LIGO detectors on revealing the neutron star properties

论文作者

Han, Ming-zhe, Jiang, Jin-liang, Tang, Shao-peng, Li, Yin-jie, Fan, Yi-zhong

论文摘要

在这项工作中,我们通过两种方式重新分析了第一个二进制中子星(BNS)合并事件GW170817的数据,包括状态(EOS)方法的参数化方程和重力波(GW)参数估计分析。已经分析了三组数据,包括联合Ligo/处女座(HLV)数据,Ligo-Hanford(H1)数据和Ligo-Livingston(L1)数据。我们通过HLV数据确认了GW170817潮汐变形的双峰概率分布,并解决了H1和L1检测器的不同贡献。我们的模拟揭示了``高估了潮汐参数的趋势''信噪比降低(SNR)。这种趋势可能是由于结果对先前的依赖性而引起的趋势(在低snr中,该效应比sim少于$ y1 $ h1 the s n n n n sim sim prop。最重要的是,在低SNR的情况下,H1的较低潮汐参数区域的主要原因是潮汐参数地图有助于评估单个探测器在测量新的双中性星星合并事件的潮汐变形方面的相对功能。

In this work we re-analyze the data of GW170817, the first binary neutron star (BNS) merger event, in two ways, including the parameterized equation of state (EoS) method and gravitational wave (GW) parameter estimation analysis. Three sets of data, including the combined LIGO/Virgo (HLV) data, the LIGO-Hanford (H1) data and the LIGO-Livingston (L1) data, have been analyzed, respectively. We confirm the bimodal probability distribution of the tidal deformability of GW170817 with the HLV data and resolve the different contributions of H1 and L1 detectors. Our simulation reveals a tendency of ``overestimating" the tidal parameter with the decreasing signal-to-noise ratio (SNR). Such a tendency is likely caused by the dependence of the result on the prior (which is not well understood and has been assumed to be widely-distributed) in the low SNR case. Though this effect is interesting, the slightly higher SNR of H1 than L1 at frequencies above $\sim 100$ Hz is most-likely not the main reason for the lower tidal parameter region favored by H1. In view of the large fluctuation of the expected tide parameter in the case of low SNR, the different probability distributions favored by the L1 and H1 data of GW170817 are reasonable. We have also explored the dependence of expected difference of SNRs of H1 and L1 detectors on the source locations in the O3 and full sensitivity runs. Such maps are helpful in evaluating the relative powers of individual detectors on measuring the tidal deformabilities for the new double neutron star merger events.

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