Global Structure of Accretion Flows in Sgr A*
Abstract
Sagittarius A* (Sgr A*) is a compact radio source at the Galactic center. Observations have confirmed that its mass is approximately (4.1)*10 M, and Sgr A* is generally believed to be powered by gas accretion onto a supermassive black hole. Multifrequency radio observations of the pulsar J1745-2900, about 0.12 pc away from Sgr A*, reveal an unusually large Faraday rotation. Combined with X-ray observations, this indicates that there is a strong magnetic field (greater than 8 mG) leading to a low plasma at large scales.We show that the gas starts to be captured by the black hole below tens of thousands of the Schwarzschild radii , where the gas pressure starts to dominate. Assuming that the accretion rate along magnetic fields at large scales decreases with the distance to the black hole following a power law, it is shown that, with an accretion disk below tens of , as revealed with the EHT observations, there should be a supersonic wind above such a small accretion disk, and the accretion flow may be convection-dominated from tens of to tens of thousands of . Detailed modeling is warranted.
Cite
@article{arxiv.2603.03996,
title = {Global Structure of Accretion Flows in Sgr A*},
author = {Shenyue Yin and Siming Liu},
journal= {arXiv preprint arXiv:2603.03996},
year = {2026}
}
Comments
9 pages, 6 figures, Accepted by ApJ