Origin of Hydrogen Ionization in the 1 pc Galactic Central Region
D.O. Chernyshov, Gene C.K. Leung, K.S. Cheng, V.A. Dogiel, V., Tatischeff

TL;DR
This study investigates the origin of gamma-ray emission and hydrogen ionization near Sgr A*, analyzing whether they are caused by relativistic protons or electrons, and finds consistency with a hadronic origin based on ionization rates.
Contribution
The paper provides a combined analytical and numerical analysis of particle propagation and energy losses, clarifying the connection between gamma-ray emission and hydrogen ionization in the galactic center.
Findings
Hydrogen ionization rate matches hadronic model predictions.
Leptonic model predicts higher ionization than observed.
Radio and X-ray flux measurements can distinguish models.
Abstract
We study a possible connection between processes of gamma-ray emission and hydrogen ionization in a few pc of central region around Sgr A*. Previous investigations showed there is a discrepancy between interpretation of gamma-ray and ionization data if gamma-rays are generated by proton-proton collisions. Here we provided analysis of processes of ionization and emission basing on analytical and numerical calculations of kinetic equations which describe processes of particle propagation and their energy losses. The origin of gamma rays could be either due to collisions of relativistic protons with the dense gas of the surrounding circumnuclear disk (CND) or bremsstrahlung and inverse Compton scattering of relativistic electrons. The hydrogen ionization in this case is produced by a low energy component of the CR spectrum. We found that if ionization is produced by protons the expected…
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Taxonomy
TopicsHigh-pressure geophysics and materials · Astrophysical Phenomena and Observations · Astro and Planetary Science
