Molecular Gas within the Milky Way's Nuclear Wind
Abstract
We report the first direct detection of molecular hydrogen associated with the Galactic nuclear wind. The Far-Ultraviolet Spectroscopic Explorer spectrum of LS 4825, a B1 Ib-II star at = 1.67,6.63 lying = 9.9 kpc from the Sun, 1 kpc below the Galactic plane near the Galactic Center, shows two high-velocity H components at = and km s. In contrast, the FUSE spectrum of the nearby (0.6 away) foreground star HD 167402 at =4.9 kpc reveals no H absorption at these velocities. Over 60 lines of H from rotational levels = 0 to 5 are identified in the high-velocity clouds. For the = km s cloud we measure total log (H) 16.75 cm, molecular fraction 0.8%, and 97 and 439 K for the ground- and excited-state rotational excitation temperatures. At = km s, we measure log (H) = 16.13 0.10 cm, 0.5%, and = 77 and = 1092 K, for which the excited state ortho- to para-H is 1.0, much less than the equilibrium value of 3 expected for gas at this temperature. This non-equilibrium ratio suggests that the km s cloud has been recently excited and has not yet had time to equilibrate. As the LS 4825 sight line passes close by a tilted section of the Galactic disk, we propose that we are probing a boundary region where the nuclear wind is removing gas from the disk.
Keywords
Cite
@article{arxiv.2112.03335,
title = {Molecular Gas within the Milky Way's Nuclear Wind},
author = {Frances H. Cashman and Andrew J. Fox and Blair D. Savage and Bart P. Wakker and Dhanesh Krishnarao and Robert A. Benjamin and Philipp Richter and Trisha Ashley and Edward B. Jenkins and Felix J. Lockman and Rongmon Bordoloi and Tae-Sun Kim},
journal= {arXiv preprint arXiv:2112.03335},
year = {2021}
}
Comments
Accepted to ApJ Letters, 11 pages, 4 figures, 1 table