论文标题

修改后的第二代时间延迟干涉法的几何方法

Geometric approach for the modified second generation time delay interferometry

论文作者

Wang, Pan-Pan, Qian, Wei-Liang, Tan, Yu-Jie, Wu, Han-Zhong, Shao, Cheng-Gang

论文摘要

时间延迟干涉法(TDI)是一种算法,该算法旨在抑制太空传播重力波检测器中的激光频率噪声。作为一种后处理技术,它是通过通过适当的时移数据流组合来构建虚拟相等的臂干干涉仪来实现的。这种方法是根据空间基重力波检测的固有特征量身定制的,即,航天器之间的距离受轨道动力学的控制,因此无法保持恒定。在不同的实现中,引入了几何TDI,是一种评估第二代TDI组合的疲惫方法。另一方面,基于计算代数几何形状的代数方法的应用主要仅限于第一代和修改的第一代TDI。此外,几何TDI还提供了关于虚拟光路的合成的直观物理解释。在本文中,几何TDI用于与三元搜索算法结合使用修改的第二代TDI组合。第二代和修改的第二代TDI溶液之间的区别在相对于相反的循环方向方面的臂长度变化速率得到了阐述。在16个连接组合中,回收了40个第二代TDI溶液,其中有9个被确定为修改后的第二代溶液。

The time delay interferometry (TDI) is an algorithm proposed to suppress the laser frequency noise in space-borne gravitational wave detectors. As a post-processing technique, it is implemented by constructing a virtual equal arm interferometer through an appropriate combination of the time-shifted data streams. Such an approach is tailored to the intrinsic feature of the space-based gravitational wave detection, namely, the distances between spacecraft are governed by the orbit dynamics and thus can not be held constant. Among different implementations, the geometric TDI was introduced as a method of exhaustion to evaluate the second-generation TDI combinations. The applications of the algebraic approach based on computational algebraic geometry, on the other hand, are mostly restricted to the first and the modified first-generation TDI. Besides, geometric TDI furnishes an intuitive physical interpretation about the synthesis of the virtual optical paths. In this paper, the geometric TDI is utilized to investigate the modified second-generation TDI combinations in conjunction with a ternary search algorithm. The distinction between the second-generation and modified second-generation TDI solutions is elaborated regarding the rate of change of the arm lengths with respect to the opposite cyclic directions. For the sixteen-link combinations, forty second-generation TDI solutions are recovered, among which nine of them are identified as the modified second-generation ones.

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