论文标题

重力镜头对第三代重力波探测器的黑洞质量功能推断的影响

Impact of gravitational lensing on black hole mass function inference with third-generation gravitational wave detectors

论文作者

He, Xianlong, Liao, Kai, Ding, Xuheng, Yang, Lilan, Wen, Xudong, You, Zhiqiang, Zhu, Zong-Hong

论文摘要

重力波(GWS)的黑洞(BH)目录的最新快速生长使我们能够研究最简单的幂律分布以外的黑洞质量功能(BHMF)的亚结构。但是,从二进制BH合并事件推论的BH质量可能会被重力透镜效应系统地“变亮”或“变暗”。在这项工作中,考虑到第三代GW检测器的检测 - 爱因斯坦望远镜(ET),我们研究了重力镜头对BHMF推断的影响。我们专注于高红移,$ z = 10 $,以获得此效果的上限。我们使用Monte Carlo(MC)方法模拟在未镜头和透镜场景下采用3种原始BHMF的数据,然后从模拟数据中恢复BHMF的参数,并分别比较结果的差异。我们发现,在一个标准偏差(std。,1 $σ$)中,所有参数均已很好地恢复,并且所有3个BHMF模型均在68 \%可靠的间隔内重建,这表明镜头也不会在很高的红色转移和ET上的高精度中急剧改变主结构。超过5000万美元_ {\ odot} $的适度影响取决于BHMF的高质量尾巴或子结构的建模。我们得出的结论是,在可预见的将来,可以安全地忽略镜头对BHMF推断的影响。仅在重点估计高红移时BHMF的高质量端的准确估计时,才需要仔细处理镜头效应。

The recent rapid growth of the black hole (BH) catalog from gravitational waves (GWs), has allowed us to study the substructure of black hole mass function (BHMF) beyond the simplest Power-Law distribution. However, the BH masses inferred from binary BH merger events, may be systematically 'brightened' or 'dimmed' by the gravitational lensing effect. In this work, we investigate the impact of gravitational lensing on the BHMF inference considering the detection of the third-generation GW detector -- the Einstein Telescope (ET). We focus on high redshift, $z=10$, in order to obtain the upper limits of this effect. We use Monte Carlo (MC) method to simulate the data adopting 3 original BHMFs under Un-Lensed and Lensed scenarios, then recover the parameters of BHMFs from the mock data, and compare the difference of results, respectively. We found that all the parameters are well recovered within one standard deviation(std., 1$σ$), and all 3 BHMF models are reconstructed within 68\% credible interval, suggesting that lensing would not change the main structure drastically, even at very high redshifts and with high precision of ET. And the modest influence beyond $50M_{\odot}$, depends on the modeling of the high mass tail or substructure of BHMF. We conclude that the impact of lensing on BHMF inference with ET can be safely ignored in the foreseeable future. Careful handling of lensing effects is required only when focusing on an accurate estimation of the high mass end of BHMF at high redshifts.

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