On The Gas Temperature of Molecular Cloud Cores
arXiv:1108.1345 · doi:10.1088/0004-637X/739/2/63
Abstract
We investigate the uncertainties affecting the temperature profiles of dense cores of interstellar clouds. In regions shielded from external ultraviolet radiation, the problem is reduced to the balance between cosmic ray heating, line cooling, and the coupling between gas and dust. We show that variations in the gas phase abundances, the grain size distribution, and the velocity field can each change the predicted core temperatures by one or two degrees. We emphasize the role of non-local radiative transfer effects that often are not taken into account, for example, when modelling the core chemistry. These include the radiative coupling between regions of different temperature and the enhanced line cooling near the cloud surface. The uncertainty of the temperature profiles does not necessarily translate to a significant error in the column density derived from observations. However, depletion processes are very temperature sensitive and a two degree difference can mean that a given molecule no longer traces the physical conditions in the core centre.
13 pages, 10 figures, accepted to ApJ
References in corpus (3)
Cited by in corpus (33)
- A General Model for the CO-H2 Conversion Factor in Galaxies with Applications to the Star Formation Law
- The PdBI Arcsecond Whirlpool Survey (PAWS). I. A Cloud-Scale/Multi-Wavelength View of the Interstellar Medium in a Grand-Design Spiral Galaxy
- Accretion disks in luminous young stellar objects
- Galactic cold cores III. General cloud properties
- The Earliest Phases of Star formation observed with Herschel (EPoS): The dust temperature and density distributions of B68
- Variation in dust properties in a dense filament of the Taurus molecular complex (L1506)
- Detection of Widespread Hot Ammonia in the Galactic Center
- The Excitation of HCN and HCO+ in the Galactic Center Circumnuclear Disk
- HD depletion in starless cores
- The M16 molecular complex under the influence of NGC6611. Herschel's perspective of the heating effect on the Eagle Nebula
- Outflow detection in a 70 m dark high-mass core
- Hydrodynamics with gas-grain chemistry and radiative transfer: comparing dynamical and static models
- On the stability of non-isothermal Bonnor-Ebert spheres
- Modelling the spinning dust emission from dense interstellar clouds
- The chemical structure of young high-mass star-forming clumps: (II) parsec-scale CO depletion and deuterium fraction of
- Observational signatures of cosmic ray interactions in molecular clouds
- Galaxy Mass, Metallicity, Radius and Star Formation Rates
- Starburst and post-starburst high-redshift protogalaxies: The feedback impact of high energy cosmic rays
- The chemical structure of young high-mass star-forming clumps: (I) Deuteration
- Waiting Times of Quasi-homologous Coronal Mass Ejections from Super Active Regions
- Reliability of NH3 as the temperature probe of cold cloud cores
- Kinetic temperatures toward X1/X2 orbit interceptions regions and Giant Molecular Loops in the Galactic center region
- Radial molecular abundances and gas cooling in starless cores
- The effect of multilayer ice chemistry on gas-phase deuteration in starless cores
- On the stability of non-isothermal Bonnor-Ebert spheres. II. The effect of gas temperature on the stability
- On the stability of nonisothermal Bonnor-Ebert spheres. III. The role of chemistry in core stabilization
- Modified Bonnor-Ebert spheres with ambipolar diffusion heating
- A detailed temperature map of the archetypal protostellar shocks in L1157
- Synthetic ngVLA line observations of a massive star-forming cloud
- Rapid Response Mode observations of GRB 160203A: Looking for fine-structure line variability at z=3.52
- FIRESTORM I: Stellar Feedback and Gas Kinematics in the Evolved W40 Hub-Filament System
- Fast spectral line calculations with the escape probability method and tests with synthetic observations of interstellar clouds
- The Dynamical State of Massive Clumps