论文标题

光子环自相关

Photon Ring Autocorrelations

论文作者

Hadar, Shahar, Johnson, Michael D., Lupsasca, Alexandru, Wong, George N.

论文摘要

在存在黑洞的情况下,光源沿多个路径连接到观察者。结果,观察到的亮度波动必须在不同时间和黑洞图像中的位置之间关联。在黑洞周围执行多个轨道的光子出现在观察者天空中的临界曲线附近,从而产生了光子环。在本文中,提出了一种新颖的可观察到:光子环上强度波动的两点相关函数。该相关函数是针对被随机赤道发射包围的Kerr黑洞进行分析计算的,其源统计是由模拟湍流流动流动的。结果表明,该两点函数表现出一个通用的自相似结构,由相同形状的多个峰组成:而每个峰的轮廓编码源中波动的统计特性,而峰的位置和高度纯粹由黑洞参数确定。测量这些峰将证明光子环的存在而不解决其厚度,并将提供黑洞质量和自旋的估计。通过对足够长的时间尺度进行定期监视,通过干涉成像可以进行适度的改进,可以对事件范围的望远镜进行适度的改进。

In the presence of a black hole, light sources connect to observers along multiple paths. As a result, observed brightness fluctuations must be correlated across different times and positions in black hole images. Photons that execute multiple orbits around the black hole appear near a critical curve in the observer sky, giving rise to the photon ring. In this paper, a novel observable is proposed: the two-point correlation function of intensity fluctuations on the photon ring. This correlation function is analytically computed for a Kerr black hole surrounded by stochastic equatorial emission, with source statistics motivated by simulations of a turbulent accretion flow. It is shown that this two-point function exhibits a universal, self-similar structure consisting of multiple peaks of identical shape: while the profile of each peak encodes statistical properties of fluctuations in the source, the locations and heights of the peaks are determined purely by the black hole parameters. Measuring these peaks would demonstrate the existence of the photon ring without resolving its thickness, and would provide estimates of black hole mass and spin. With regular monitoring over sufficiently long timescales, this measurement could be possible via interferometric imaging with modest improvements to the Event Horizon Telescope.

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