Clump mass function at an early stage of molecular cloud evolution: I. A statistical approach
arXiv:1203.3363 · doi:10.1111/j.1365-2966.2012.20939.x
Abstract
We derive the mass function of condensations (clumps) which were formed through a turbulent cascade over a range of spatial scales pc during early, predominantly turbulent evolution of a molecular cloud. The approach rests upon the assumption of a statistical clump mass-density relationship with a scale dependence of the exponent obtained from equipartition relations between various forms of energy of clumps. The derived clump mass function (ClMF) could be represented by series of 2 or 3 power laws, depending on the chosen equipartition relation, the velocity scaling index and the type of turbulent forcing. The high-mass ClMF exhibits an average slope , typical for fractal clouds, whereas its intermediate-mass part is shallower or flattened, in agreement with some observational studies.
Accepted in MNRAS; 12 pages, 6 figures
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