论文标题

原始磁盘中的四个环形结构不到500,000年

Four annular structures in a protostellar disk less than 500,000 years old

论文作者

Segura-Cox, Dominique M., Schmiedeke, Anika, Pineda, Jaime E., Stephens, Ian W., Fernández-López, Manuel, Looney, Leslie W., Caselli, Paola, Li, Zhi-Yun, Mundy, Lee G., Kwon, Woojin, Harris, Robert J.

论文摘要

在围绕预序序列周围的磁盘中的环形结构或环和间隙已在大量的II类对象中发现了约1,000,000年的年龄。这些结构通常被解释为行星形成的证据,行星质量的身体雕刻环和磁盘中的缝隙。这意味着,当原子体仍然嵌入更大的气体和灰尘信封中时,在I类阶段甚至年轻的磁盘中,行星形成也可能已经在进行。尽管年轻的磁盘可能在地球形成的开始中起重要作用,但仅在过去十年中,才开始观察到最年轻的恒星形成阶段的磁盘的详细特性。在这里,我们提出了1.3毫米的尘埃排放观察,并通过5个AU分辨率进行了分辨率,该分辨率显示了年轻的(<500,000年)Protostar IRS63。IRS63中的四个环形子结构,一个IRS 63,位于附近的Ophiuchus Molecular Molecular Cloud中的单个I级源(在144 pc的距离上)是最伟大的IM级别的IS级米,这是一个相关的IM级米,该级别是一定级别的米尔特(sub)。 au)。在年轻时观察到的多个环形下结构可以成为灰尘颗粒生长的早期立足点,这是行星形成的先决条件。是否已经存在于IRS 63的磁盘中的行星,显然,行星形成过程始于年轻的原始阶段,比当前行星形成理论所预测的早。

Annular structures, or rings and gaps, in disks around pre-main sequence stars have been detected in abundance towards Class II objects ~1,000,000 years in age. These structures are often interpreted as evidence of planet formation, with planet-mass bodies carving rings and gaps in the disk. This implies that planet formation may already be underway in even younger disks in the Class I phase, when the protostar is still embedded in a larger scale dense envelope of gas and dust. While younger disks likely play an important role in the onset of planet formation, only within the past decade have detailed properties of disks in the youngest star-forming phases begun to be observed. Here we present 1.3 mm dust emission observations with 5 au resolution that show four annular substructures in the disk of the young (<500,000 years) protostar IRS 63. IRS 63, a single Class I source located in the nearby Ophiuchus molecular cloud (at a distance of 144 pc), is one of the brightest Class I protostars at (sub)millimeter wavelengths that also has a relatively large disk (>50 au). Multiple annular substructures observed towards disks at young times can act as an early foothold for dust grain growth, a prerequisite of planet formation. Whether planets already exist or not in the disk of IRS 63, it is clear that the planet formation process begins in the young protostellar phases, earlier than predicted by current planet formation theories.

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