English

The High-Density Ionized Gas in the Central Parsec of the Galaxy

Astrophysics of Galaxies 2015-05-19 v1

Abstract

We report a study of the H30α\alpha line emission at 1.3 mm from the region around Sgr A* made with the Submillimeter Array at a resolution of 2\arcsec\ over a field of 60\arcsec\ (2 parsec) and a velocity range of -360 to +345 \kms. This field encompasses most of the Galactic center's "minispiral". With an isothermal homogeneous HII model, we determined the physical conditions of the ionized gas at specific locations in the Northern and Eastern Arms from the H30α\alpha line data along with Very Large Array data from the H92α\alpha line at 3.6 cm and from the radio continuum emission at 1.3 cm. The typical electron density and kinetic temperature in the minispiral arms are 3-21×104\times10^4 cm3^{-3} and 5,000-13,000 K, respectively. The H30α\alpha and H92α\alpha line profiles are broadened due to the large velocity shear within and along the beam produced by dynamical motions in the strong gravitational field near Sgr A*. We constructed a 3D model of the minispiral using the orbital parameters derived under the assumptions that the gas flows are in Keplerian motion. The gas in the Eastern Arm appears to collide with the Northern Arm flow in the "Bar" region, which is located 0.1-0.2 parsec south of and behind Sgr A*. Finally, a total Lyman continuum flux of 3×10503\times10^{50} photons s1^{-1} is inferred from the assumption that the gas is photoionized and the ionizing photons for the high-density gas in the minispiral arms are from external sources, which is equivalent to 250\sim250 O9-type zero-age-main-sequence stars.

Keywords

Cite

@article{arxiv.1009.1401,
  title  = {The High-Density Ionized Gas in the Central Parsec of the Galaxy},
  author = {Jun-Hui Zhao and Ray Blundell and James M. Moran and Dennis Downes and Karl F. Schuster and Daniel P. Marrone},
  journal= {arXiv preprint arXiv:1009.1401},
  year   = {2015}
}

Comments

23 pages, including 8 figures, accepted for publication in the Astrophysical Journal