English

Demystifying Strange O VI Line Widths with Hydrodynamic Simulations

Astrophysics of Galaxies 2025-09-16 v1

Abstract

We present a survey of O VI line widths obtained from hydrodynamic simulations that model the mixing between High Velocity Clouds and the circumgalactic medium and track the non-equilibrium ionization populations of the ions. We run 10 simulations with various physical conditions of the clouds and ambient environments, so that our results can be compared to observations of various cloud environments. Synthetic spectra are created for the simulated sight lines that contain O VI. The range of our Doppler broadening parameter, bb, is from \sim6 km s1^{-1} to \sim107 km s1^{-1}. We calculate the thermal and non-thermal contributions to the bb values. Both bb and the thermal contribution to bb can be substantially less than the CIE value. These narrow line widths are due to the time delay in recombination from O VI to O V in mixing regions, which results in substantial amounts of O VI at temperatures below the 2.9 ×\times 105^{5} K CIE temperature. Our results show that non equilibrium collisional ionization and mixing can produce the narrow line widths that are seen in multiple observations.

Keywords

Cite

@article{arxiv.2509.11351,
  title  = {Demystifying Strange O VI Line Widths with Hydrodynamic Simulations},
  author = {Chen Wang and Eric Goetz and Robin Shelton},
  journal= {arXiv preprint arXiv:2509.11351},
  year   = {2025}
}

Comments

31 pages, 16 figures, 31 tables

R2 v1 2026-07-01T05:35:40.877Z