Interstellar Polarization Survey III: Relation Between Optical Polarization and Reddening in the General Interstellar Medium
arXiv:2306.07016 · doi:10.3847/1538-3881/acdc1e
Abstract
Optical starlight can be partially polarized while propagating through the dusty, magnetized interstellar medium. The polarization efficiency describes the polarization intensity fraction per reddening unit, P/E(), related to the interstellar dust grains and magnetic field properties. The maximum value observed, [P/E, is thus achieved under optimal polarizing conditions of the interstellar medium. Therefore, the analysis of polarization efficiency observations across the Galaxy contributes to the study of magnetic field topology, small-scale magnetic fluctuations, grain-alignment efficiency, and composition. Infrared observations from satellite have set [P/E to 13 mag. However, recent optical polarization observations in 's highly polarized regions showed polarization efficiency values between 13.6 mag and 18.2 mag (depending on the extinction map used), indicating that [P/E is not well constrained yet. We used -band polarimetry of the Interstellar Polarization Survey (consisting of 10500 high-quality observations distributed in 34 fields of ) to accurately estimate the polarization efficiency in the interstellar medium. We estimated the upper limit of P/E() with the weighted percentile of the field. In five regions, the polarization efficiency upper limit is above 13 mag. Furthermore, we found [P/E mag using diffuse intermediate latitude () regions with apparently strong regular Galactic magnetic field in the plane-of-sky. We studied the variations of P/E() across the sky and tested toy models of polarization efficiency with Galactic longitude that showed some correspondence with a uniform spiral magnetic field.
23 pages, 15 figures, 2 tables, accepted for publication in AJ
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