【2h】

Time-Delay Interferometry

机译:延时干涉仪

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摘要

Equal-arm detectors of gravitational radiation allow phase measurements many orders of magnitude below the intrinsic phase stability of the laser injecting light into their arms. This is because the noise in the laser light is common to both arms, experiencing exactly the same delay, and thus cancels when it is differenced at the photo detector. In this situation, much lower level secondary noises then set the overall performance. If, however, the two arms have different lengths (as will necessarily be the case with space-borne interferometers), the laser noise experiences different delays in the two arms and will hence not directly cancel at the detector. In order to solve this problem, a technique involving heterodyne interferometry with unequal arm lengths and independent phase-difference readouts has been proposed. It relies on properly time-shifting and linearly combining independent Doppler measurements, and for this reason it has been called time-delay interferometry (TDI).This article provides an overview of the theory, mathematical foundations, and experimental aspects associated with the implementation of TDI. Although emphasis on the application of TDI to the Laser Interferometer Space Antenna (LISA) mission appears throughout this article, TDI can be incorporated into the design of any future space-based mission aiming to search for gravitational waves via interferometric measurements. We have purposely left out all theoretical aspects that data analysts will need to account for when analyzing the TDI data combinations.
机译:重力辐射的等臂检测器可以进行相位测量,该相位测量比将光注入其臂中的激光的固有相位稳定性低很多数量级。这是因为激光中的噪声对于两个手臂来说都是共同的,经历了完全相同的延迟,因此当在光电检测器处发生差异时可以消除。在这种情况下,低得多的次级噪声将决定整体性能。但是,如果两个臂的长度不同(星载干涉仪必定如此),则激光噪声在两个臂中会经历不同的延迟,因此不会在检测器上直接抵消。为了解决这个问题,已经提出了一种包括具有不相等的臂长和独立的相差读数的外差干涉测量法的技术。它依赖于适当的时移并线性组合独立的多普勒测量,因此,它被称为时延干涉测量法(TDI)。本文概述了与实现多普勒相关的理论,数学基础和实验方面。 TDI。尽管在本文中始终强调将TDI应用到激光干涉仪空间天线(LISA)任务中,但是TDI可以并入任何旨在通过干涉测量法搜索引力波的未来太空任务的设计中。我们故意遗漏了数据分析人员在分析TDI数据组合时需要考虑的所有理论方面。

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