论文标题

用NGEHT测量光子环

Measuring Photon Rings with the ngEHT

论文作者

Tiede, Paul, Johnson, Michael D., Pesce, Dominic W., Palumbo, Daniel C. M., Chang, Dominic O., Galison, Peter

论文摘要

一般相对性预测,光学薄的积聚流周围的黑洞的图像通常具有``光子环'',该图像由一系列越来越尖锐的子环组成,与黑洞附近越来越强烈的发射相对应。由于镜头的效果由时空曲率确定,因此光子环为黑洞特性和KERR公制的测试提供了一种途径。我们使用非常长的基线干涉法(VLBI)与事件范围望远镜(EHT)和下一代EHT(NGEHT)一起检测和测量光子环的前景。我们在简单的几何模型上提出了一系列测试,并表明2017年和2022年的EHT观测值缺乏检测光子环的角度分辨率和敏感性,而NGEHT在230 GHz和345 GHz的覆盖范围和角度分辨率则足以容纳这些模型。然后,我们通过应用``混合成像''中的一般相对论磁性水力动力学模拟的更逼真的图像来分析检测前景,同时对两个组件进行建模:灵活的光栅图像(捕获直接发射)和一个环分量。使用贝叶斯VLBI建模软件包\同志,我们表明,对于光子环检测和测量结果,必须谨慎地解释混合成像的结果 - 混合成像很容易为光子环提供误报,并且其环的测量并不直接与光子环的特性相对应。

General relativity predicts that images of optically thin accretion flows around black holes should generically have a ``photon ring,'' composed of a series of increasingly sharp subrings that correspond to increasingly strongly lensed emission near the black hole. Because the effects of lensing are determined by the spacetime curvature, the photon ring provides a pathway to precise measurements of the black hole properties and tests of the Kerr metric. We explore the prospects for detecting and measuring the photon ring using very long baseline interferometry (VLBI) with the Event Horizon Telescope (EHT) and the next generation EHT (ngEHT). We present a series of tests using idealized self-fits to simple geometrical models and show that the EHT observations in 2017 and 2022 lack the angular resolution and sensitivity to detect the photon ring, while the improved coverage and angular resolution of ngEHT at 230 GHz and 345 GHz is sufficient for these models. We then analyze detection prospects using more realistic images from general relativistic magnetohydrodynamic simulations by applying ``hybrid imaging,'' which simultaneously models two components: a flexible raster image (to capture the direct emission) and a ring component. Using the Bayesian VLBI modeling package \comrade, we show that the results of hybrid imaging must be interpreted with extreme caution for both photon ring detection and measurement -- hybrid imaging readily produces false positives for a photon ring, and its ring measurements do not directly correspond to the properties of the photon ring.

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