On networks of space-based gravitational-wave detectors

Cai, Rong-Gen, Guo, Zong-Kuan, Hu, Bin, Liu, Chang, Lu, Youjun, Ni, Wei-Tou, Ruan, Wen-Hong, Seto, Naoki, Wang, Gang, Wu, Yue-Liang
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Abstract

The space-based laser interferometers, LISA, Taiji and TianQin, are targeting to observe milliHz gravitational waves (GWs) in the 2030s. The joint observations from multiple space-based detectors yield significant advantages. In this work, we recap the studies and investigations for the joint space-based GW detector networks to highlight: 1) the high precision of sky localization for the massive binary black hole (BBH) coalescences and the GW sirens in the cosmological implication, 2) the effectiveness to test the parity violation in the stochastic GW background observations, 3) the efficiency of subtracting galactic foreground, 4) the improvement in stellar-mass BBH observations. We inspect alternative networks by trading off massive BBH observations and stochastic GW background observation.
天基引力波探测器网络
天基激光干涉仪LISA、太极和天琴的目标是在本世纪30年代观测毫赫引力波(GWs)。来自多个天基探测器的联合观测具有显著的优势。本文综述了联合天基双黑洞探测器网络的研究和调查,重点强调:1)大质量双黑洞合并和双黑洞预警在宇宙学意义上的高精度天空定位,2)随机双黑洞背景观测中检验奇偶性破坏的有效性,3)银河系前景减除的效率,4)恒星质量双黑洞观测的改进。我们通过权衡大量BBH观测和随机GW背景观测来检查替代网络。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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