论文标题

重力波与微杆面相交的波效应:一种新算法和补充研究

Wave effect of gravitational waves intersected with a microlens field: a new algorithm and supplementary study

论文作者

Shan, Xikai, Li, Guoliang, Chen, Xuechun, Zheng, Wenwen, Zhao, Wen

论文摘要

重力波(GW)事件的增加允许接收强大的GWS镜头图。但是,由于Microlens场引起的波浪效应(衍射和干扰)污染了图像对的参数估计,这可能导致对强透镜信号的错误判断。为了量化Microlens领域的影响,研究人员需要大量的统计研究样本。然而,由于振荡特性,菲涅尔 - 基尔乔夫衍射的计算时间阻碍了这一方面的研究。尽管有许多算法可用,但是大多数算法不能很好地应用于Microlens场嵌入星系/星系簇中的情况。这项工作提出了一种更快,更准确的算法,用于研究嵌入不同类型的强镜图像中的微透镜的波光学效应。此外,我们为菲涅尔 - 基尔奇霍夫衍射积分的透镜平面边界提供了定量估计标准。该算法可以显着促进波光学的研究,特别是在嵌入星系/星系簇中的微丝体场的情况下。

The increase in gravitational wave (GW) events has allowed receiving strong lensing image pairs of GWs. However, the wave effect (diffraction and interference) due to the microlens field contaminates the parameter estimation of the image pair, which may lead to a misjudgment of strong lensing signals. To quantify the influence of the microlens field, researchers need a large sample of statistical research. Nevertheless, due to the oscillation characteristic, the Fresnel-Kirchhoff diffraction integral's computational time hinders this aspect's study. Although many algorithms are available, most cannot be well applied to the case where the microlens field is embedded in galaxy/galaxy clusters. This work proposes a faster and more accurate algorithm for studying the wave optics effect of microlenses embedded in different types of strong lensing images. Additionally, we provide a quantitative estimation criterion for the lens plane boundary for the Fresnel-Kirchhoff diffraction integral. This algorithm can significantly facilitate the study of wave optics, particularly in the case of microlens fields embedded in galaxy/galaxy clusters.

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