论文标题

从组合的时间延迟干涉法表征仪器噪声和随机重力波信号

Charactering instrumental noises and stochastic gravitational wave signals from combined time-delay interferometry

论文作者

Wang, Gang, Li, Bin, Xu, Peng, Fan, Xilong

论文摘要

Lisa将在空间中的Milli-Hz频带中检测重力波(GWS)。开发时间延迟干涉法(TDI)是为了抑制加速度噪声和光学计量噪声下方的激光频率噪声。为了识别随机GW信号,需要表征这些纠缠在TDI数据流中的噪声组件。在这项工作中,我们通过组合米歇尔森和继电器配置的第一代TDI通道来研究噪声表征。 Michelson通道有助于表征较低频段中的加速度噪声,并且继电器配置可以有效地解决较高频率中的光路噪声。可以从组合中实现协同作用,以确定这些工具噪声。基于特征的噪声,我们进一步重建所选TDI通道中噪声的功率谱。进行两种情况以表征随机GW信号的光谱形状。对于建模的信号,可以从TDI数据直接估算其参数,并且可以从推断值中恢复其频谱。对于意外的信号,可以从噪声提取的残留物中识别并检索其光谱的光谱,其中其功率频谱密度超过噪声水平。

LISA will detect gravitational waves (GWs) in the milli-Hz frequency band in space. Time-delay interferometry (TDI) is developed to suppress laser frequency noise beneath the acceleration noise and optical metrology noise. To identify stochastic GW signals, it would be required to characterize these noise components entangled in TDI data streams. In this work, we investigate noises characterization by combining the first-generation TDI channels from Michelson and Relay configurations. The Michelson channels are helpful to characterize acceleration noises in the lower frequency band, and the Relay configuration could effectively resolve optical path noises in the higher frequencies. Synergy could be achieved from their combination to determine these instrumental noises. Based on the characterized noises, we further reconstruct the power spectrum of noise in the selected TDI channel. Two cases are performed to characterize the spectrum shape of a stochastic GW signal. For a modeled signal, its parameter(s) could be directly estimated from the TDI data, and its spectrum could be recovered from the inferred values. And for an unexpected signal, its spectrum may be recognized and retrieved from noise-subtracted residual in which its power spectral density surpasses the noise level.

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