English

A Census of the High-Density Molecular Gas in M82

Cosmology and Nongalactic Astrophysics 2015-05-19 v2 Instrumentation and Methods for Astrophysics

Abstract

We present a three-pointing study of the molecular gas in the starburst nucleus of M82 based on 190 - 307 GHz spectra obtained with Z-Spec at the Caltech Submillimeter Observatory. We present intensity measurements, detections and upper limits, for 20 transitions, including several new detections of CS, HNC, C2H, H2CO, and CH3CCH lines. We combine our measurements with previously-published measurements at other frequencies for HCN, HNC, CS, C34S, and HCO+ in a multi-species likelihood analysis constraining gas mass, density and temperature, and the species' relative abundances. We find some 1.7 - 2.7 x 10^8 M_sun of gas with n_H2 between 1 - 6 x 10^4 cm^-3 and T > 50 K. While the mass and temperature are comparable to values inferred from mid-J CO transitions, the thermal pressure is a factor of 10 - 20 greater. The molecular interstellar medium is largely fragmented and is subject to ultraviolet irradiation from the star clusters. It is also likely subject to cosmic rays and mechanical energy input from the supernovae, and is warmer on average than the molecular gas in the massive star formation regions in the Milky Way. The typical conditions in the dense gas in M82's central kpc appear unfavorable for further star formation; if any appreciable stellar populations are currently forming, they are likely biased against low mass stars, producing a top-heavy initial mass function.

Keywords

Cite

@article{arxiv.1006.1964,
  title  = {A Census of the High-Density Molecular Gas in M82},
  author = {B. J. Naylor and C. M. Bradford and J. E. Aguirre and J. J. Bock and L. Earle and J. Glenn and H. Inami and J. Kamenetzky and P. R. Maloney and H. Matsuhara and H. T. Nguyen and J. Zmuidzinas},
  journal= {arXiv preprint arXiv:1006.1964},
  year   = {2015}
}

Comments

15 pages (using emulateapj.cls), 6 figures, Astrophysical Journal, in press