English

Warm Molecular Hydrogen in Nearby, Luminous Infrared Galaxies

Astrophysics of Galaxies 2018-12-12 v1

Abstract

Mid-infrared molecular hydrogen (H2_2) emission is a powerful cooling agent in galaxy mergers and in radio galaxies; it is a potential key tracer of gas evolution and energy dissipation associated with mergers, star formation, and accretion onto supermassive black holes. We detect mid-IR H2_2 line emission in at least one rotational transition in 91\% of the 214 Luminous Infrared Galaxies (LIRGs) observed with Spitzer as part of the Great Observatories All-sky LIRG Survey (GOALS). We use H2_2 excitation diagrams to estimate the range of masses and temperatures of warm molecular gas in these galaxies. We find that LIRGs in which the IR emission originates mostly from the Active Galactic Nuclei (AGN) have about 100K higher H2_2 mass-averaged excitation temperatures than LIRGs in which the IR emission originates mostly from star formation. Between 10 and 15\% of LIRGs have H2_2 emission lines that are sufficiently broad to be resolved or partially resolved by the high resolution modules of Spitzer's Infrared Spectrograph (IRS). Those sources tend to be mergers and contain AGN. This suggests that a significant fraction of the H2_2 line emission is powered by AGN activity through X-rays, cosmic rays, and turbulence. We find a statistically significant correlation between the kinetic energy in the H2_2 gas and the H2_2 to IR luminosity ratio. The sources with the largest warm gas kinetic energies are mergers. We speculate that mergers increase the production of bulk in-flows leading to observable broad H2_2 profiles and possibly denser environments.

Keywords

Cite

@article{arxiv.1805.09926,
  title  = {Warm Molecular Hydrogen in Nearby, Luminous Infrared Galaxies},
  author = {Andreea O. Petric and Lee Armus and Nicolas Flagey and Pierre Guillard and Justin Howell and Hanae Inami and Vassillis Charmandaris and Aaron Evans and Sabrina Stierwalt and Tanio Diaz-Santos and Nanyao Lu and Henrik Spoon and Joe Mazzarella and Phil Appleton and Ben Chan and Jason Chu and Derek Hand and George Privon and David Sanders and Jason Surace and Kevin Xu and Yinghe Zhao},
  journal= {arXiv preprint arXiv:1805.09926},
  year   = {2018}
}

Comments

31 pages, 12 figures, 7 tables, accepted for publication in the Astrophysical Journal