A statistical analysis of dust polarization properties in ALMA observations of Class 0 protostellar cores
V. J. M. Le Gouellec, A. J. Maury, V. Guillet, C. L. H. Hull, J. M., Girart, A. Verliat, R. Mignon-Risse, V. Valdivia, P. Hennebelle, M., Gonz\'alez, F. Louvet

TL;DR
This study analyzes ALMA observations of Class 0 protostars to understand dust grain alignment mechanisms, revealing a consistent alignment efficiency across different densities and suggesting mechanisms more effective than standard RAT alignment.
Contribution
The paper provides the first comprehensive statistical analysis of dust polarization in Class 0 protostars, challenging existing grain alignment theories and proposing more efficient mechanisms.
Findings
Significant correlation between polarization dispersion and fraction.
Product of dispersion and fraction remains constant across densities.
Dust alignment efficiency may exceed standard RAT predictions.
Abstract
Recent observational progress has challenged the dust grain-alignment theories used to explain the polarized dust emission routinely observed in star-forming cores. In an effort to improve our understanding of the dust grain alignment mechanism(s), we have gathered a dozen ALMA maps of (sub)millimeter-wavelength polarized dust emission from Class 0 protostars, and carried out a comprehensive statistical analysis of dust polarization quantities. We analyze the statistical properties of the polarization fraction P_frac and dispersion of polarization position angles S. More specifically, we investigate the relationship between S and P_frac as well as the evolution of the product S*P_frac as a function of the column density of the gas in the protostellar envelopes. We find a significant correlation in the polarized dust emission from protostellar envelopes seen with ALMA; the power-law…
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