The Bolocam Galactic Plane Survey -- III. Characterizing Physical Properties of Massive Star-Forming Regions in the Gemini OB1 Molecular Cloud
Miranda K. Dunham, Erik Rosolowsky, Neal J. Evans II, Claudia J., Cyganowski, James Aguirre, John Bally, Cara Battersby, Eric Todd Bradley,, Darren Dowell, Meredith Drosback, Adam Ginsburg, Jason Glenn, Paul Harvey,, Manuel Merello, Wayne Schlingman, Yancy L. Shirley

TL;DR
This study uses millimeter and ammonia observations to characterize physical properties of star-forming regions in the Gemini OB1 molecular cloud, revealing their masses, temperatures, densities, and dynamical states.
Contribution
It provides the first detailed physical analysis of BGPS sources in Gemini OB1, combining millimeter and ammonia data to assess their masses, temperatures, and virial stability.
Findings
Mean source mass of 230 solar masses
Total cloud mass of 8,400 solar masses
Virial parameter close to 1 indicating gravitational equilibrium
Abstract
We present the 1.1 millimeter Bolocam Galactic Plane Survey (BGPS) observations of the Gemini OB1 molecular cloud complex, and targeted ammonia observations of the BGPS sources. When paired with molecular spectroscopy of a dense gas tracer, millimeter observations yield physical properties such as masses, radii, mean densities, kinetic temperatures and line widths. We detect 34 distinct BGPS sources above 5-sigma=0.37 Jy/beam with corresponding 5-sigma detections in the ammonia (1,1) transition. Eight of the objects show water maser emission (20%). We find a mean millimeter source FWHM of 1.12 pc, and a mean kinetic temperature of 20 K for the sample of 34 BGPS sources. The observed ammonia line widths are dominated by non-thermal motions, typically found to be a few times the thermal sound speed expected for the derived kinetic temperature. We calculate the mass for each source from…
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