论文标题

磁盘和射流未对准的观察性签名在积聚黑洞的图像中

Observational signatures of disk and jet misalignment in images of accreting black holes

论文作者

Chatterjee, Koushik, Younsi, Ziri, Liska, Matthew, Tchekhovskoy, Alexander, Markoff, Sera, Yoon, Doosoo, van Eijnatten, David, Hesp, Casper, Ingram, Adam, van der Klis, Michiel

论文摘要

黑洞积聚是自然界最有效的能量提取过程之一。当气体掉入时,其重力结合能的很大一部分要么以黑洞驱动的喷气机和磁盘驱动的风向外转化为辐射或向外流动。最近,Event Horizo​​n Telescope(EHT)是一个地球尺寸的亚毫米级无线电干涉仪,捕获了M87的Black Hole的第一张图像。这些图像使用与黑洞旋转轴对齐的旋转轴的吸积盘分析和解释了积聚磁盘的通用磁流失动力学(GRMHD)模型。但是,由于插入气体通常对黑洞旋转方向不敏感,因此积聚盘和黑洞旋转之间的未对准可能是自然界中常见的。在这项工作中,我们使用一般性的辐射转移(GRRT)代码\ texttt {Bhoss}来计算(高度)倾斜磁盘/喷气机模型的第一个合成无线电图像,由我们的GPU加速GRMHD GRMHD代码\ texttt {hamr}生成。虽然倾斜对系统动力学没有明显影响,而不是黑洞的几十个重力半径,但磁盘和射流的翘曲可以在较小尺度上的EHT图像中观察到可观察到的签名。将来自GRMHD模型的图像与M87的43 GHz和230 GHz EHT图像进行比较,我们发现M87可能具有倾斜的磁盘/喷气系统。此外,倾斜的磁盘和喷气机在230 GHz通量中显示出显着的时间变异性,可以通过M87的更长效率EHT观察进一步测试。

Black hole accretion is one of nature's most efficient energy extraction processes. When gas falls in, a significant fraction of its gravitational binding energy is either converted into radiation or flows outwards in the form of black hole-driven jets and disk-driven winds. Recently, the Event Horizon Telescope (EHT), an Earth-size sub-millimetre radio interferometer, captured the first images of M87's black hole. These images were analysed and interpreted using general-relativistic magnetohydrodynamics (GRMHD) models of accretion disks with rotation axes aligned with the black hole spin axis. However, since infalling gas is often insensitive to the black hole spin direction, misalignment between accretion disk and black hole spin may be a common occurrence in nature. In this work, we use the general-relativistic radiative transfer (GRRT) code \texttt{BHOSS} to calculate the first synthetic radio images of (highly) tilted disk/jet models generated by our GPU-accelerated GRMHD code \texttt{HAMR}. While the tilt does not have a noticeable effect on the system dynamics beyond a few tens of gravitational radii from the black hole, the warping of the disk and jet can imprint observable signatures in EHT images on smaller scales. Comparing the images from our GRMHD models to the 43 GHz and 230 GHz EHT images of M87, we find that M87 may feature a tilted disk/jet system. Further, tilted disks and jets display significant time variability in the 230 GHz flux that can be further tested by longer-duration EHT observations of M87.

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