论文标题

耀斑及其回声可以帮助区分光子环与空间地球非常长的基线干涉法的黑洞

Flares and their echoes can help distinguish photon rings from black holes with space-Earth very long baseline interferometry

论文作者

Andrianov, A., Chernov, S., Girin, I., Likhachev, S., Lyakhovets, A., Shchekinov, Yu.

论文摘要

黑洞阴影边缘附近的光子环被认为是验证一般相对论并提供可靠测量主黑洞参数的独特工具:自旋和质量。尽管仅适用于附近的超级质量黑洞(SMBH),但可以进行此类测量,其空间地球非常长的基线干涉法(S-VLBI)在亚毫升波长范围内。为了使子女图在拉格朗日太阳 - 地球L2库中具有较长基线的S-evlbi观测值。但是,附近SMBH的平均通量:sagittarius a $^\ ast $(sgr a $^\ ast $)和m87 $^\ ast $ - $f_ν\ sim 1 $ jy,仍然不足以从具有如此长的底层的光子环中检测到信号。我们认为,只有在其积聚磁盘中亚毫米波带中耀斑的表现才能揭示来自L2处S-EVLBI光子环的可观察信号。在{\ IT事件范围望远镜}(eHt)和{\ it毫米毫米空间天文台}(MSO)的计划的联接程序中以及计划的{\ it下一代EHT}(NGEHT)项目中,将有可能发生这种观察。讨论了光子环的两种不同的观察测试。第一个涉及观察时间序列从随后的子节中响应的时间序列,这可以在联接EHT-MSO配置中的1D可见性函数中看到,第二个 - 测量值 - 测量2D VLBI图像中随后子弹之间的角度的增加,可以在NGEHT项目中获得。

Photon rings near the edge of a black hole shadow is supposed to be a unique tool to validate general relativity and provide reliable measurements of principal black hole parameters: spin and mass. Such measurements are possible though only for nearby supermassive black holes (SMBH) with Space-Earth Very Long Baseline Interferometry (S-VLBI) in the submillimeter wavelength range. For subrings to be distinguished S-EVLBI observations with long baselines at the Lagrangian Sun-Earth L2 libration point are needed. However, the average fluxes of nearby SMBH: Sagittarius A$^\ast$ (Sgr A$^\ast$) and M87$^\ast$ -- $F_ν\sim 1$ Jy, are still insufficient to detect the signal from the photon rings with even such long baselines. We argue that only manifestations of flares in the submillimeter waveband in their accretion disks can reveal observable signals from the photon rings with the S-EVLBI at L2. Such observations will become possible within the planned join program of the {\it Event Horizon Telescope} (EHT) and {\it Millimetron Space Observatory} (MSO), and within the planned {\it next generation EHT} (ngEHT) project. Two different observational tests for photons rings are discussed. The first one involves observations of a time series of responds from subsequent subrings as can be seen in a 1D visibility function within the join EHT-MSO configuration, the second one -- measurements of an increase of the angle between subsequent subrings in the 2D VLBI image which can be obtained within the ngEHT project.

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