超长基高频空间无线电干涉测量观测光子环的可能性

IF 0.7 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS
A. G. Rudnitskiy, M. A. Shchurov, A. V. Khudchenko, T. A. Syachina
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引用次数: 0

摘要

本文研究了利用空间超长基线无线电干涉测量法在600 GHz频率下观测超大质量黑洞附近光子环的可能性。600千兆赫的范围很有希望通过超长基线无线电干涉测量进行这种观测,因为高频减少了星际介质对无线电发射散射的贡献,也使干涉仪的角分辨率增加成为可能。反过来,高角分辨率和低散射表明,在超大质量黑洞附近可能探测到光子环。为了估计这些可能性,考虑到干涉仪的各种可能的灵敏度参数,从基线投影对能见度振幅分布进行了建模。在此基础上,展望了600 ghz范围内光子环观测的前景。此外,还对空间干涉仪的星载接收复合体提出了要求,使探测光子环成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Possibility of Observing Photon Rings Using High-Frequency Space Radio Interferometry with Very Long Bases

Possibility of Observing Photon Rings Using High-Frequency Space Radio Interferometry with Very Long Bases

In the paper, the possibility of observing photon rings in the close vicinity of supermassive black holes using space very long baseline radio interferometry at a frequency of 600 GHz has been examined. The 600-GHz range is promising for such observations by very long baseline radio interferometry because high frequency reduces the contribution of radio emission scattering by the interstellar medium and also makes it possible to increase the angular resolution of the interferometer. High angular resolution and low scattering, in turn, have suggested the possible detection of photon rings in the close vicinity of supermassive black holes. To estimate these possibilities, modeling of the visibility amplitude distribution from the baseline projection has been performed, taking into account various possible sensitivity parameters of the interferometer. Based on the results, the prospects for the 600-GHz range in terms of observing photon rings have been shown. In addition, the requirements for the on-board receiving complex of a space interferometer have been formulated, at which detection of photon rings is feasible.

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来源期刊
Astronomy Reports
Astronomy Reports 地学天文-天文与天体物理
CiteScore
1.40
自引率
20.00%
发文量
57
审稿时长
6-12 weeks
期刊介绍: Astronomy Reports is an international peer reviewed journal that publishes original papers on astronomical topics, including theoretical and observational astrophysics, physics of the Sun, planetary astrophysics, radio astronomy, stellar astronomy, celestial mechanics, and astronomy methods and instrumentation.
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