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Published February 10, 2013 | Published
Journal Article Open

Non-Zeeman Circular Polarization of Molecular Rotational Spectral Lines

Abstract

We present measurements of circular polarization from rotational spectral lines of molecular species in Orion KL, most notably ^(12)CO (J = 2 → 1), obtained at the Caltech Submillimeter Observatory with the Four-Stokes-Parameter Spectral Line Polarimeter. We find levels of polarization of up to 1%-2% in general; for ^(12)CO (J = 2 → 1) this level is comparable to that of linear polarization also measured for that line. We present a physical model based on resonant scattering in an attempt to explain our observations. We discuss how slight differences in scattering amplitudes for radiation polarized parallel and perpendicular to the ambient magnetic field, responsible for the alignment of the scattering molecules, can lead to the observed circular polarization. We also show that the effect is proportional to the square of the magnitude of the plane of the sky component of the magnetic field and therefore opens up the possibility of measuring this parameter from circular polarization measurements of Zeeman insensitive molecules.

Additional Information

© 2013 American Astronomical Society. Received 2012 August 19; accepted 2012 December 10; published 2013 January 21. M.H. is grateful to C. Cohen-Tannoudji of the Ecole Normale Sup´erieure de Paris for an insightful discussion. M.H.'s research is funded through the NSERC Discovery Grant, Canada Research Chair, and Western's Academic Development Fund programs. T.H. is funded by the Alexander von Humboldt foundation in Germany. The Caltech Submillimeter Observatory is operated by the California Institute of Technology under cooperative agreement with the National Science Foundation (AST-0838261).

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