论文标题

时间延迟干涉法无时钟同步

Time delay interferometry without clock synchronisation

论文作者

Hartwig, Olaf, Bayle, Jean-Baptiste, Staab, Martin, Hees, Aurélien, Lilley, Marc, Wolf, Peter

论文摘要

时间延迟干涉法(TDI)是一种用于LISA的数据处理技术,旨在抑制原本压倒性的激光噪声几个数量级。人们普遍认为,只有将每个航天器的所有相位或频率测量都同步到共同的时间范围后才能应用TDI。我们通过分析证明,以示例为例,可以使用原始的,非同步的数据来计算TDI,从而避免了初始同步处理步骤的需求,并显着简化了初始降噪管道。此外,原始数据不含时钟同步和参考框架转换算法引入的任何潜在伪像,该算法允许直接在MHz Beatnotes上操作。结果,与文献中先前提出的方法相反,带内时钟噪声是直接抑制的(在主激光噪声减少步骤之前,将驱动器中的大趋势删除,并且时钟噪声在额外的处理步骤中被抑制)。我们使用使用Lisa仪器和Pytdi的全尺寸数值模拟来验证我们的算法,并表明我们达到与以前提出的方法相同的性能水平,最终受到时钟边带稳定性的限制。

Time-delay interferometry (TDI) is a data processing technique for LISA designed to suppress the otherwise overwhelming laser noise by several orders of magnitude. It is widely believed that TDI can only be applied once all phase or frequency measurements from each spacecraft have been synchronized to a common time frame. We demonstrate analytically, using as an example the commonly-used Michelson combination X, that TDI can be computed using the raw, unsynchronized data, thereby avoiding the need for an initial synchronization processing step and significantly simplifying the initial noise reduction pipeline. Furthermore, the raw data is free of any potential artifacts introduced by clock synchronization and reference frame transformation algorithms, which allows to operate directly on the MHz beatnotes. As a consequence, in-band clock noise is directly suppressed as part of TDI, in contrast to the approach previously proposed in the literature (in which large trends in the beatnotes are removed before the main laser-noise reduction step, and clock noise is suppressed in an extra processing step). We validate our algorithm with full-scale numerical simulations that use LISA Instrument and PyTDI and show that we reach the same performance levels as the previously proposed methods, ultimately limited by the clock sideband stability.

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