论文标题
偏心率对重力波搜索二进制黑洞的影响:高质量案例
Impact of eccentricity on the gravitational wave searches for binary black holes: High mass case
论文作者
论文摘要
在密集的恒星环境中,通过动力学相互作用的恒星质量二进制黑洞的可能形成预测了在地面重力波探测器的频带中具有不可忽略的偏心率的二进制的存在。用可测量的轨道偏心率检测二进制黑洞合并将验证该地层通道的存在。当前在匹配过滤器重力波搜索Ligo-Virgo数据忽略偏心效应的波形模板中,有望降低其效率以检测怪异的二进制黑洞。同时,相干未建模的引力波搜索(对信号模型的假设最少)的灵敏度已被证明在很大程度上不受相当相当的轨道偏心率的影响。在本文中,我们比较了Ligo和Pirgo最近使用的两种最先进的搜索算法的性能,以在第二次观察跑步(O2)(O2)中搜索二进制黑洞,从而通过向O2 Ligo数据注入O2 centricDectric centricDectricDectricdecentric centric deckeform的数值 - 利率模拟来量化其搜索敏感性。我们的结果表明,匹配的过滤器搜索PYCBC的性能优于高chirp质量($> 20 m _ {\ odot} $)和低偏心率区域($ e_ {30 Hz} <0.3 $)的未建模搜索CWB。另一方面,对于中等的偏心率和低呼叫质量,未建模的搜索比建模的搜索更敏感。
The possible formation of stellar-mass binary black holes through dynamical interactions in dense stellar environments predicts the existence of binaries with non-negligible eccentricity in the frequency band of ground-based gravitational wave detectors; the detection of binary black hole mergers with measurable orbital eccentricity would validate the existence of this formation channel. Waveform templates currently used in the matched-filter gravitational-wave searches of LIGO-Virgo data neglect effects of eccentricity which is expected to reduce their efficiency to detect eccentric binary black holes. Meanwhile, the sensitivity of coherent unmodeled gravitational-wave searches (with minimal assumptions about the signal model) have been shown to be largely unaffected by the presence of even sizable orbital eccentricity. In this paper, we compare the performance of two state-of-the-art search algorithms recently used by LIGO and Virgo to search for binary black holes in the second Observing Run (O2), quantifying their search sensitivity by injecting numerical-relativity simulations of inspiral-merger-ringdown eccentric waveforms into O2 LIGO data. Our results show that the matched-filter search PyCBC performs better than the unmodeled search cWB for the high chirp mass ($>20 M_{\odot}$) and low eccentricity region ($e_{30 Hz} < 0.3$) of parameter space. For moderate eccentricities and low chirp mass, on the other hand, the unmodeled search is more sensitive than the modeled search.