High Excitation Molecular Gas in the Galactic Center Loops; 12CO(J =2-1 and J =3-2) Observations
Natsuko Kudo, Kazufumi Torii, Mami Machida, Timothy A. Davis, Kazuki, Tsutsumi, Motusuji Fujishita, Nayuta Moribe, Hiroaki Yamamoto, Takeshi Okuda,, Akiko Kawamura, Norikazu Mizuno, Toshikazu Onishi, Hiroyuki Maezawa, Akira, Mizuno, Kunihiko Tanaka, Nobuyuki Yamaguchi

TL;DR
This study uses CO observations to reveal highly excited molecular gas in the Galactic center loops, showing evidence of shocks and additional heating mechanisms, and models their kinematics.
Contribution
It provides detailed spatial and excitation condition maps of the loops, and introduces a kinematic model explaining their velocity structures.
Findings
Loops exhibit higher excitation than disk gas.
Foot points show signs of strong shocks and heating.
Kinematic model explains observed velocity features.
Abstract
We have carried out 12CO(J =2-1) and 12CO(J =3-2) observations at spatial resolutions of 1.0-3.8 pc toward the entirety of loops 1 and 2 and part of loop 3 in the Galactic center with NANTEN2 and ASTE. These new results revealed detailed distributions of the molecular gas and the line intensity ratio of the two transitions, R3-2/2-1. In the three loops, R3-2/2-1 is in a range from 0.1 to 2.5 with a peak at ~ 0.7 while that in the disk molecular gas is in a range from 0.1 to 1.2 with a peak at 0.4. This supports that the loops are more highly excited than the disk molecular gas. An LVG analysis of three transitions, 12CO J =3-2 and 2-1 and 13CO J =2-1, toward six positions in loops 1 and 2 shows density and temperature are in a range 102.2 - 104.7 cm-3 and 15-100 K or higher, respectively. Three regions extended by 50-100 pc in the loops tend to have higher excitation conditions as…
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