论文标题

扰动挠度角,强场极限中的重力镜头和黑洞阴影

Perturbative deflection angle, gravitational lensing in the strong field limit and the black hole shadow

论文作者

Jia, Junji, Huang, Ke

论文摘要

提出了一种在强场限制下,在任意静态和球形对称的空间中计算时间线和空射线的偏转角的扰动方法。结果采用$(1-b_c/b)$的准系列形式,其中$ b $是影响参数,而$ b_c $是其关键值,并明确给出了该系列的系数。该结果自然还要考虑源和检测器的有限距离效应,并允许以更精确的方式求解相对论图像的明显角度。由此,BH角阴影大小表示为一个简单的公式,包含度量函数和粒子/光子球半径。根据源检测器角坐标差的不同值,相对论图像的放大率取决于源与检测器距离与镜头的距离之间的关系。为了验证所有这些结果,我们将它们应用于Hayward BH时空,专注于其电荷参数$ L $的效果和信号的渐近速度$ V $。发现BH阴影尺寸略有减小,因为$ L $增加了其临界价值,并且随着$ V $的降低而增加。但是,对于偏转角度和图像的放大倍数,$ L $的增加和$ V $的减少都会增加其值。

A perturbative method to compute the deflection angle of both timelike and null rays in arbitrary static and spherically symmetric spacetimes in the strong field limit is proposed. The result takes a quasi-series form of $(1-b_c/b)$ where $b$ is the impact parameter and $b_c$ is its critical value, with coefficients of the series explicitly given. This result also naturally takes into account the finite distance effect of both the source and detector, and allows to solve the apparent angles of the relativistic images in a more precise way. From this, the BH angular shadow size is expressed as a simple formula containing metric functions and particle/photon sphere radius. The magnification of the relativistic images were shown to diverge at different values of the source-detector angular coordinate difference, depending on the relation between the source and detector distance from the lens. To verify all these results, we then applied them to the Hayward BH spacetime, concentrating on the effects of its charge parameter $l$ and the asymptotic velocity $v$ of the signal. The BH shadow size were found to decrease slightly as $l$ increase to its critical value, and increase as $v$ decreases from light speed. For the deflection angle and the magnification of the images however, both the increase of $l$ and decrease of $v$ will increase their values.

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