Modelling dust polarization observations of molecular clouds through MHD simulations

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Abstract

The BLASTPol observations of Vela C have provided the most detailed characterization of the polarization fraction p and dispersion in polarization angles S for a molecular cloud. We compare the observed distributions of p and S with those obtained in synthetic observations of simulations of molecular clouds, assuming homogeneous grain alignment. We find that the orientation of the mean magnetic field relative to the observer has a significant effect on the p and S distributions. These distributions for Vela C are most consistent with synthetic observations where the mean magnetic field is close to the line of sight. Our results point to apparent magnetic disorder in the Vela C molecular cloud, although it can be due to either an inclination effect (i.e. observing close to the mean field direction) or significant field tangling from strong turbulence/low magnetization. The joint correlations of p with column density and of S with column density for the synthetic observations generally agree poorly with the Vela C joint correlations, suggesting that understanding these correlations requires a more sophisticated treatment of grain alignment physics.

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King, P. K., Fissel, L. M., Chen, C. Y., & Li, Z. Y. (2018). Modelling dust polarization observations of molecular clouds through MHD simulations. Monthly Notices of the Royal Astronomical Society, 474(4), 5122–5142. https://doi.org/10.1093/mnras/stx3096

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