paper

Evidence of large scale energy cascade in the spiral galaxy NGC 5236

arXiv:2006.04575 · doi:10.1093/mnras/staa1651

Abstract

Turbulence plays an important role in the structure and dynamics of the galaxy and influences various processes therein including star formation. In this work, we investigate the large scale turbulence properties of the external spiral galaxy NGC 5236. We combine the VLA multi-configuration archival data with the new GMRT observation to estimate the column density and line of sight velocity fluctuation power spectra for this galaxy over almost two decades of length scales. The energy input scale to the ISM turbulence is found to be around kpc. Power spectra of the two-dimensional turbulence in the galaxy's disk follow a power law with a slope for the column density and for the line of sight velocity. The measured power spectra slopes strongly suggest in favour of a compressive forcing with a steady energy input of erg cm sec. We conclude that much of these originate from the gravitational instabilities and self-gravity in the disk. This is the first and most comprehensive study of turbulence statistics for any external spiral galaxy.

8 pages, 3 figures, Accepted for Publication in MNRAS on June 08 2020

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Evidence of large scale energy cascade in the spiral galaxy NGC 5236 · wovepaper