T. Rashidi, V. Anari, A. Bartkiewicz, P. Wolak, M. Szymczak, F. Rajabi

2025.6.14Monthly Notices of the Royal Astronomical Society: Letters

DOI: 10.1093/mnrasl/slaf061

Abstract

We present a comprehensive analysis of the periodic flares observed in the 6.7 GHz methanol transition in G22.356+0.066, utilizing the Maxwell–Bloch equations (MBEs) as a framework to model these phenomena. By solving the one-dimensional MBEs, we describe the behaviour of both the quasi-steady-state maser and transient superradiance regimes. Our findings indicate that the observed periodic flares, with varying time-scales across different velocities, are consistent with the characteristics of Dicke’s superradiance, triggered by a common radiative pump in regions of varying inverted column densities. This work provides new insights into the physical processes governing variability in maser-hosting regions and underscores the significance of superradiance as a powerful radiation mechanism in astrophysical environments.

Citation format

RASHIDI, T., et al. Modelling the periodic 6.7 ghz methanol flaring in g22.356+0.066. Monthly Notices of the Royal Astronomical Society: Letters, 2025.