English

Stability of galaxies across morphological sequence

Astrophysics of Galaxies 2023-04-26 v1

Abstract

We investigate the stability of nearby disc galaxies and galaxies at redshift (zz) equal to 4.5. We explore the connection between the stability parameter (QRW)(Q_{RW}), star formation rate (SFRSFR), gas fraction (fGas)(f^{Gas}), and the time scale for growth of gravitational instabilities (τ)(\tau). We find that, despite differences in morphology 9191 %\% of the nearby galaxies have a minimum value of stability parameter (QRWMinQ^{Min}_{RW}) greater than 11 indicating stability against the growth of axisymmetric instabilities. The spirals in our sample have higher median star formation rate, lower median QRWQ_{RW}, a lower fGasf^{Gas} and small time scale for growth of gravitational instabilities than irregular galaxies. We find that the gravitational instabilities in spirals convert a large fraction of gas into stars quickly, depleting the gas reservoirs. On the other hand, star formation occurs more gradually over longer timescales in irregulars with a higher gas fraction. We then compare the stability of the nearby galaxies with galaxies at z=4.5z\,=\,4.5. We find that net stability levels in the nearby galaxies and the galaxies at z=4.5z\,=\,4.5 are primarily driven by the stellar disc suggesting the presence of an inherent mechanism that self-regulates the stability. Finally, upon removing the contribution of the dark matter to the total potential, the median QRWQ_{RW} for the nearby galaxies and galaxies at z=4.5z \,= \,4.5 remains unchanged indicating that the baryons can self-regulate the stability levels, at least in a statistical sense.

Keywords

Cite

@article{arxiv.2304.07734,
  title  = {Stability of galaxies across morphological sequence},
  author = {K. Aditya},
  journal= {arXiv preprint arXiv:2304.07734},
  year   = {2023}
}

Comments

Accepted for publication in MNRAS

R2 v1 2026-06-28T10:07:21.988Z