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Published February 10, 2011 | public
Journal Article

Ambipolar diffusion and turbulent magnetic fields in molecular clouds

Abstract

We review the introduction and development of a novel method for the characterization of magnetic fields in star-forming regions. The technique is based on the comparison of spectral line profiles from coexistent neutral and ion molecular species commonly detected in molecular clouds, sites of star formation. Unlike other methods used to study magnetic fields in the cold interstellar medium, this ion/neutral technique is not based on spin interactions with the field. Instead, it relies on and takes advantage of the strong cyclotron coupling between the ions and magnetic fields, thus exposing what is probably the clearest observational manifestation of magnetic fields in the cold, weakly ionized gas that characterizes the interior of molecular clouds. We will show how recent development and modeling of the ensuing ion line narrowing effect leads to a determination of the ambipolar diffusion scale involving the turbulent component of magnetic fields in star-forming regions, as well as the strength of the ordered component of the magnetic field.

Additional Information

© 2011 World Scientific Publishing Company. Received 20 December 2010. We thank R. H. Hildebrand for insightful discussions and his encouragement while pursuing this line of research. M.H.'s research is funded through the NSERC Discovery Grant, Canada Research Chair, Canada Foundation for Innovation, Ontario Innovation Trust, and Western's Academic Development Fund programs. The Caltech Submillimeter Observatory is funded through the NSF grant AST-0540882 to the California Institute of Technology.

Additional details

Created:
August 22, 2023
Modified:
October 23, 2023