Temperature Structure of the Pipe Nebula Studied by the Intensity Anomaly of the OH 18 cm
arXiv:2010.06977 · doi:10.3847/1538-4357/abc16f
Abstract
We present observations of the four hyperfine structure components of the OH 18 cm transition (1612, 1665, 1667 and 1720 MHz) toward a filamentary dark cloud, the Pipe nebula, with the Green Bank Telescope. A statistical equilibrium analysis is applied to the spectra,and the kinetic temperature of a diffuse molecular gas surrounding dense cores is determined accurately; the derived temperature ranges from 40 K to 75 K. From this result, we assess the heating effect on the filamentarystructure of the nebula's "stem" region due to UV photons from a nearby star -Ophiuchi and a possible filament-filament collision in the interface of the "stem" and "bowl" regions. In the stem region, the gas kinetic temperature is found to be almost independent of the apparent distance from -Ophiuchi: the UV-heating effect by the star is not visible. On the other hand, the gas kinetic temperature is raised, as high as 75 K, at the interface of the two filamentary structures. This result provides us with an additional support to the filament-filament collision scenario in the Pipe nebula.
33 pages, 13 figures
References in corpus (7)
- The Nature of the Dense Core Population in the Pipe Nebula: Thermal Cores Under Pressure
- 2MASS wide field extinction maps - I. The Pipe nebula
- Optical polarimetry toward the Pipe nebula: Revealing the importance of the magnetic field
- On the radiation driven alignment of dust grains: Detection of the polarization hole in a starless core
- Deep Near-Infrared Survey of the Pipe Nebula II: Data, Methods, and Dust Extinction Maps
- Formation of dense structures induced by filament collisions. Correlation of density, kinematics and magnetic field in the Pipe nebula
- The Effect of Far-infrared Radiation on the Hyperfine Anomaly of the OH 18 cm Transition