论文标题
tdi infinity:时间延迟干涉法无延迟
TDI-infinity: time-delay interferometry without delays
论文作者
论文摘要
基于空间的引力波观测液LISA依赖于一种合成干涉法(时间延迟干涉法或TDI)的形式,其中通过适当延迟相相测量的线性组合,取消了原本压倒的激光相噪声。当考虑了丽莎轨道的现实特征时,这些可观察到的长度和复杂性会增长。在本文中,我们概述了TDI的隐式配方,其中我们直接根据基本相测量来编写Lisa的可能性,并且我们在无限激光噪声方差极限的激光相噪声上边缘化。同等地,我们依赖于从激光传播延迟的离散过滤器表示数字(而不是代数)定义的TDI可观察物。我们的方法概括为臂章的任何时间依赖性;它简化了重力波信号的建模;它可以直接处理数据差距和缺失的测量。
The space-based gravitational-wave observatory LISA relies on a form of synthetic interferometry (time-delay interferometry, or TDI) where the otherwise overwhelming laser phase noise is canceled by linear combinations of appropriately delayed phase measurements. These observables grow in length and complexity as the realistic features of the LISA orbits are taken into account. In this paper we outline an implicit formulation of TDI where we write the LISA likelihood directly in terms of the basic phase measurements, and we marginalize over the laser phase noises in the limit of infinite laser-noise variance. Equivalently, we rely on TDI observables that are defined numerically (rather than algebraically) from a discrete-filter representation of the laser propagation delays. Our method generalizes to any time dependence of the armlengths; it simplifies the modeling of gravitational-wave signals; and it allows a straightforward treatment of data gaps and missing measurements.