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On the prospects of imaging Sagittarius A* from space

机译:关于射手座A *从太空成像的前景

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摘要

Very Long Baseline Interferometry (VLBI) at sub-millimeter waves has the potential to image the shadow of the black hole in the Galactic Center, Sagittarius A* (Sgr A*), and thereby test basic predictions of the theory of general relativity. We investigate the imaging prospects of a new Space VLBI mission concept. The setup consists of two satellites in polar or equatorial circular Medium-Earth Orbits with slightly different radii, resulting in a dense spiral-shaped uv-coverage with long baselines, allowing for extremely high-resolution and high-fidelity imaging of radio sources. We simulate observations of a general relativistic magnetohydrodynamics model of Sgr A* for this configuration with noise calculated from model system parameters. After gridding the uv-plane and averaging visibilities accumulated over multiple months of integration, images of Sgr A* with a resolution of up to 4 μas could be reconstructed, allowing for stronger tests of general relativity and accretion models than with ground-based VLBI.
机译:亚毫米波的非常长的基线干涉测量(VLBI)具有潜力,可以将半乳液中心的黑洞阴影图像,射手座A *(SGR A *),从而测试了一般相对性理论的基本预测。我们调查新的空间VLBI任务概念的成像前景。该设置包括具有略微不同的半径的极性或赤道圆形介质轨道的两颗卫星,导致具有长基线的密集螺旋形UV覆盖,允许无线电源极高分辨率和高保真成像。我们使用模型系统参数计算的噪声模拟SGR A *一般相对论磁力学模型的观察。在网格上网平面和累积多个月内积累的平均等待之后,可以重建分辨率高达4μA的SGR A *的图像,允许比基于地面的VLBI更强的一般相对性和增值模型的测试。

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