English

Herschel Galactic plane survey of [NII] fine structure emission

Astrophysics of Galaxies 2015-12-09 v1

Abstract

We present the first large scale high angular resolution survey of ionized nitrogen in the Galactic Plane through emission of its two fine structure transitions ([NII]) at 122 μ\mum and 205 μ\mum. The observations were largely obtained with the PACS instrument onboard the Herschel Space Observatory. The lines-of-sight were in the Galactic plane, following those of the Herschel OTKP project GOT C+. Both lines are reliably detected at the 108^{-8} - 107^{-7} WWm2^{-2}sr1^{-1} level over the range -60o^{o} \leq ll \leq 60o^{o}. The rmsrms of the intensity among the 25 PACS spaxels of a given pointing is typically less than one third of the mean intensity, showing that the emission is extended. [NII] is produced in gas in which hydrogen is ionized, and collisional excitation is by electrons. The ratio of the two fine structure transitions provides a direct measurement of the electron density, yielding n(e)n(e) largely in the range 10 to 50 cm3^{-3} with an average value of 29 cm3^{-3} and N+^+ column densities 1016^{16} to 1017^{17} cm2^{-2}. [NII] emission is highly correlated with that of [CII], and we calculate that between 1/3 and 1/2 of the [CII] emission is associated with the ionized gas. The relatively high electron densities indicate that the source of the [NII] emission is not the Warm Ionized Medium (WIM), which has electron densities more than 100 times smaller. Possible origins of the observed [NII] include the ionized surfaces of dense atomic and molecular clouds, the extended low density envelopes of HII regions, and low-filling factor high-density fluctuations of the WIM.

Keywords

Cite

@article{arxiv.1510.05706,
  title  = {Herschel Galactic plane survey of [NII] fine structure emission},
  author = {Paul F. Goldsmith and Umut A. Yıldız and William D. Langer and Jorge L. Pineda},
  journal= {arXiv preprint arXiv:1510.05706},
  year   = {2015}
}

Comments

51 pages, 24 figures, accepted by The Astrophysical Journal