论文标题

使用强烈镜头信号测试重力波极化的性质

Testing the nature of gravitational-wave polarizations using strongly lensed signals

论文作者

Goyal, Srashti, Haris, K., Mehta, Ajit Kumar, Ajith, Parameswaran

论文摘要

通过基于地面激光干涉探测器网络进行引力波(GW)观察,使我们能够探测GW极化的性质。这将是对一般相对性(GR)的有趣检验,因为GR仅预测了两种极化模式,而重力理论预测了多达六个极化模式。 GW观测探测极化性质的能力受网络中线性独立检测器的可用数量的限制。 (要提取所有极化模式,至少应该有与极化模式一样多的检测器。)GWS的强重力透镜可显着增加网络中检测器的有效数量。由于镜头强(例如,通过星系),可以观察到相同信号的多个副本,而时间延迟为几分钟到几周。由于地球的旋转,观察相同的GW信号的多个副本将使网络能够测量相同极化的不同组合。这有效地乘以网络中的检测器数量。使用贝叶斯模型选择并假设简单的极化模型,专注于二进制黑洞合并的强烈镜头信号,这些信号产生了两个可观察到的“图像”,我们表明我们的区分偏振模型的能力得到了显着提高。

Gravitational-wave (GW) observations by a network of ground-based laser interferometric detectors allow us to probe the nature of GW polarizations. This would be an interesting test of general relativity (GR), since GR predicts only two polarization modes while there are theories of gravity that predict up to six polarization modes. The ability of GW observations to probe the nature of polarizations is limited by the available number of linearly independent detectors in the network. (To extract all polarization modes, there should be at least as many detectors as the polarization modes.) Strong gravitational lensing of GWs offers a possibility to significantly increase the effective number of detectors in the network. Due to strong lensing (e.g., by galaxies), multiple copies of the same signal can be observed with time delays of several minutes to weeks. Owing to the rotation of the earth, observation of the multiple copies of the same GW signal would allow the network to measure different combinations of the same polarizations. This effectively multiplies the number of detectors in the network. Focusing on strongly lensed signals from binary black hole mergers that produce two observable "images", using Bayesian model selection and assuming simple polarization models, we show that our ability to distinguish between polarization models is significantly improved.

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