论文标题

ALMA观察中尘埃极化特性的统计分析0类原始核心

A statistical analysis of dust polarization properties in ALMA observations of Class 0 protostellar cores

论文作者

Gouellec, V. J. M. Le, Maury, A. J., Guillet, V., Hull, C. L. H., Girart, J. M., Verliat, A., Mignon-Risse, R., Valdivia, V., Hennebelle, P., González, M., Louvet, F.

论文摘要

最近的观察性进步挑战了用于解释在星形核心中常规观察到的极化粉尘发射的灰尘分析理论。为了提高我们对灰尘对准机制的理解,我们收集了来自0级Protostars的(亚)毫米波长极化粉尘发射的十二个Alma图,并对灰尘偏振量进行了全面的统计分析。我们分析了极化分数P_FRAC的统计特性和极化位置角度的分散。更具体地说,我们研究了S和P_FRAC之间的关系以及乘积S*P_FRAC的演变,这是Protostellar信封中气体柱密度的函数。我们发现与Alma看到的原始信封的极化粉尘发射有显着相关性。幂律指数与普朗克在星形云中观察到的指数明显不同。对灰尘晶对准效率敏感的产品S*P_FRAC在包膜柱密度的三个数量级上大约是恒定的。这表明,在星形核心中产生大部分极化灰尘发射的晶粒对准机制可能并不系统地取决于当地条件,例如局部气体密度。最终,我们的结果表明,在0类Protostars的典型的各种局部条件下,尘埃对准机制在产生粉尘极化发射方面有效。这些物体中发现的谷物对齐效率似乎高于顺磁性晶粒的标准大鼠比对产生的效率。将需要进一步的研究来了解如何通过不同的辐射条件,灰尘特性或其他谷物对准机制来再现观测值的有效谷物对齐方式。

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 index differs significantly from the one observed by Planck in star-forming clouds. The product S*P_frac, which is sensitive to the dust grain alignment efficiency, is approximately constant across three orders of magnitude in envelope column density. This suggests that the grain alignment mechanism producing the bulk of the polarized dust emission in star-forming cores may not depend systematically on the local conditions such as local gas density. Ultimately, our results suggest dust alignment mechanism(s) are efficient at producing dust polarized emission in the various local conditions typical of Class 0 protostars. The grain alignment efficiency found in these objects seems to be higher than the efficiency produced by the standard RAT alignment of paramagnetic grains. Further study will be needed to understand how more efficient grain alignment via, e.g., different irradiation conditions, dust grain characteristics, or additional grain alignment mechanisms can reproduce the observations.

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