论文标题

重力和旋转将磁场拖动高质量恒星形成

Gravity and rotation drag the magnetic field in high-mass star formation

论文作者

Beuther, H., Soler, J. D., Linz, H., Henning, Th., Gieser, C., Kuiper, R., Vlemmings, W., Hennebelle, P., Feng, S., Smith, R., Ahmadi, A.

论文摘要

天体研究的核心是从冷星际介质中形成热星。了解恒星形成过程中磁场的重要性仍然是一个重大挑战。随着Atacama大毫米阵列的出现,通过极化观测研究磁场的潜力取得了巨大的发展。但是,主要问题是磁场塑造了恒星形成过程的多少,或者重力是否在很大程度上主导。在这里,我们表明,对于高质量恒星形成区域G327.3磁场形态似乎是由中央大量气体核心的重力收缩占主导地位的,恒星形成进行。我们发现,在该地区的外部,磁场针对该地区的重力中心。馈入中心核心的丝状结构也表现出针对重力中心的U形磁场形态,再次显示了向中心的重力阻力。然后,内部显示旋转特征,可能与嵌入式磁盘相关,并且那里的磁场形态似乎是旋转主导的。因此,我们的结果表明,对于该区域,重力和旋转主要主导动力学并塑造磁场形态。

The formation of hot stars out of the cold interstellar medium lies at the heart of astrophysical research. Understanding the importance of magnetic fields during star formation remains a major challenge. With the advent of the Atacama Large Millimeter Array, the potential to study magnetic fields by polarization observations has tremendously progressed. However, the major question remains how much magnetic fields shape the star formation process or whether gravity is largely dominating. Here, we show that for the high-mass star-forming region G327.3 the magnetic field morphology appears to be dominantly shaped by the gravitational contraction of the central massive gas core where the star formation proceeds. We find that in the outer parts of the region, the magnetic field is directed toward the gravitational center of the region. Filamentary structures feeding the central core exhibit U-shaped magnetic field morphologies directed toward the gravitational center as well, again showing the gravitational drag toward the center. The inner part then shows rotational signatures, potentially associated with an embedded disk, and there the magnetic field morphology appears to be rotationally dominated. Hence, our results demonstrate that for this region gravity and rotation are dominating the dynamics and shaping the magnetic field morphology.

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