English

The Orion fingers: H$_2$ temperatures and excitation in an explosive outflow

Astrophysics of Galaxies 2018-04-25 v1

Abstract

We measure H2_2 temperatures and column densities across the Orion BN/KL explosive outflow from a set of thirteen near-IR H2_2 rovibrational emission lines observed with the TripleSpec spectrograph on Apache Point Observatory's 3.5-meter telescope. We find that most of the region is well-characterized by a single temperature (~2000-2500 K), which may be influenced by the limited range of upper energy levels (6000-20,000 K) probed by our data set. The H2_2 column density maps indicate that warm H2_2 comprises 105^{-5} - 103^{-3} of the total H2_2 column density near the center of the outflow. Combining column density measurements for co-spatial H2_2 and CO at T = 2500 K, we measure a CO/H2_2 fractional abundance of 2×\times103^{-3}, and discuss possible reasons why this value is in excess of the canonical 104^{-4} value, including dust attenuation, incorrect assumptions on co-spatiality of the H2_2 and CO emission, and chemical processing in an extreme environment. We model the radiative transfer of H2_2 in this region with UV pumping models to look for signatures of H2_2 fluorescence from H I Lyα\alpha pumping. Dissociative (J-type) shocks and nebular emission from the foreground Orion H II region are considered as possible Lyα\alpha sources. From our radiative transfer models, we predict that signatures of Lyα\alpha pumping should be detectable in near-IR line ratios given a sufficiently strong source, but such a source is not present in the BN/KL outflow. The data are consistent with shocks as the H2_2 heating source.

Keywords

Cite

@article{arxiv.1803.01903,
  title  = {The Orion fingers: H$_2$ temperatures and excitation in an explosive outflow},
  author = {Allison Youngblood and Kevin France and Adam Ginsburg and Keri Hoadley and John Bally},
  journal= {arXiv preprint arXiv:1803.01903},
  year   = {2018}
}

Comments

24 pages, 8 figures, 3 tables, accepted to ApJ