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A circumstellar disk associated with a massive protostellar object

机译:与巨大的星状天体相关的星际盘

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The formation process for stars with masses several times that of the Sun is still unclear. The two main theories are mergers of several low-mass young stellar objects, which requires a high stellar density, or mass accretion from circumstellar disks in the same way as low-mass stars are formed, accompanied by outflows during the process of gravitational infall. Although a number of disks have been discovered around low- and intermediate-mass young stellar objects, the presence of disks around massive young stellar objects is still uncertain and the mass of the disk system detected around one such object, M17, is disputed. Here we report near-infrared imaging polarimetry that reveals an outflow/disk system around the Becklin-Neugebauer protostellar object, which has a mass of at least seven solar masses (solar mass). This strongly supports the theory that stars with masses of at least 7 solar mass form in the same way as lower mass stars.
机译:尚不清楚质量是太阳数倍的恒星的形成过程。两种主要理论是几种低质量的年轻恒星物体的合并,这需要高的恒星密度,或者以与形成低质量恒星相同的方式从恒星盘增加质量,并伴随着引力下降过程中的外流。尽管已在低质量和中等质量的年轻恒星物体周围发现了许多磁盘,但仍不确定在巨大的年轻恒星物体周围是否存在磁盘,并且围绕一个这样的物体M17检测到的磁盘系统质量存在争议。在这里,我们报告了近红外成像极化技术,该技术揭示了Becklin-Neugebauer原恒星天体周围的流出/磁盘系统,该天体的质量至少为七个太阳质量(太阳质量)。这有力地支持了质量至少为7太阳质量的恒星与质量较低的恒星形成恒星的理论。

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