English

Interstellar H$_2$O Masers from J Shocks

Astrophysics of Galaxies 2015-06-16 v1

Abstract

We present a model in which the 22 GHz H2_2O masers observed in star-forming regions occur behind shocks propagating in dense regions (preshock density n0106108n_0 \sim 10^6 - 10^8 cm3^{-3}). We focus on high-velocity (vs>30v_s > 30 km s1^{-1}) dissociative J shocks in which the heat of H2_2 re-formation maintains a large column of 300400\sim 300-400 K gas; at these temperatures the chemistry drives a considerable fraction of the oxygen not in CO to form H2_2O. The H2_2O column densities, the hydrogen densities, and the warm temperatures produced by these shocks are sufficiently high to enable powerful maser action. The observed brightness temperatures (generally 10111014\sim 10^{11} - 10^{14} K) are the result of coherent velocity regions that have dimensions in the shock plane that are 10 to 100 times the shock thickness of 1013\sim 10^{13} cm. The masers are therefore beamed towards the observer, who typically views the shock "edge-on", or perpendicular to the shock velocity; the brightest masers are then observed with the lowest line of sight velocities with respect to the ambient gas. We present numerical and analytic studies of the dependence of the maser inversion, the resultant brightness temperature, the maser spot size and shape, the isotropic luminosity, and the maser region magnetic field on the shock parameters and the coherence path length; the overall result is that in galactic H2_2O 22 GHz masers these observed parameters can be produced in J shocks with n0106108n_0\sim 10^6 - 10^8 cm3^{-3} and vs30200v_s \sim 30 -200 km s1^{-1}. A number of key observables such as maser shape, brightness temperature, and global isotropic luminosity depend only on the particle flux into the shock, j=n0vsj=n_0v_s, rather than on n0n_0 and vsv_s separately.

Keywords

Cite

@article{arxiv.1306.5276,
  title  = {Interstellar H$_2$O Masers from J Shocks},
  author = {David Hollenbach and Moshe Elitzur and Christopher F. McKee},
  journal= {arXiv preprint arXiv:1306.5276},
  year   = {2015}
}
R2 v1 2026-06-22T00:38:26.720Z