English

Modelling of the continuum emission from Class 0 sources

Astrophysics 2007-05-23 v1

Abstract

Class 0 sources are objects representing the earliest phase of the protostellar evolution. Since they are highly obscured by an extended dusty envelope, these objects emit mainly in the far-infrared to millimetre wavelength range. The analysis of their spectral energy distributions with wide wavelength coverage allows to determine the bolometric temperature and luminosity. However, a more detailed physical interpretation of the internal physical structure of these objects requires radiative transfer modelling. We present modelling results of spectral energy distributions of a sample of nine Class 0 sources in the Perseus and Orion molecular clouds. The SEDs have been simulated using a radiative transfer code based on the Monte Carlo method. We find that a spherically symmetric model for the youngest Class 0 sources allows to reproduce the observed SEDs reasonably well. From our modelling we derive physical parameters of our sources, such as their mass, density distribution, size, etc. We find a density structure of ρr2\rho \sim r^{-2} for the collapsing cores at young ages, evolving to ρr3/2\rho \sim r^{-3/2} at later times.

Keywords

Cite

@article{arxiv.astro-ph/0311531,
  title  = {Modelling of the continuum emission from Class 0 sources},
  author = {M. Rengel and D. Froebrich and S. Wolf and J. Eisloeffel},
  journal= {arXiv preprint arXiv:astro-ph/0311531},
  year   = {2007}
}

Comments

5 pages, 2 figures, Latex, macro included, oral contribution in JENAM 2003, "The early phases of star formation", in press

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