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首页> 外文期刊>The Astrophysical Journal. Letters >THE VLA VIEW OF THE HL TAU DISK: DISK MASS, GRAIN EVOLUTION, AND EARLY PLANET FORMATION
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THE VLA VIEW OF THE HL TAU DISK: DISK MASS, GRAIN EVOLUTION, AND EARLY PLANET FORMATION

机译:HL Tau盘的VLA视图:磁盘质量,谷物进化和早期地球形成

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摘要

The first long-baseline ALMA campaign resolved the disk around the young star HL Tau into a number of axisymmetric bright and dark rings. Despite the very young age of HL Tau, these structures have been interpreted as signatures for the presence of (proto) planets. The ALMA images triggered numerous theoretical studies based on disk-planet interactions, magnetically driven disk structures, and grain evolution. Of special interest are the inner parts of disks, where terrestrial planets are expected to form. However, the emission from these regions in HL. Tau turned out to be optically thick at all ALMA wavelengths, preventing the derivation of surface density profiles and grain-size distributions. Here, we present the most sensitive images of HL. Tau obtained to date with the Karl G. Jansky Very Large Array at 7.0 mm wavelength with a spatial resolution comparable to the ALMA images. At this long wavelength, the dust emission from HL Tau is optically thin, allowing a comprehensive study of the inner disk. We obtain a total disk dust mass of (1-3) x 10(-3) M-circle dot, depending on the assumed opacity and disk temperature. Our optically thin data also indicate fast grain growth, fragmentation, and formation of dense clumps in the inner densest parts of the disk. Our results suggest that the HL. Tau disk may be actually in a very early stage of planetary formation, with planets not already formed in the gaps but in the process of future formation in the bright rings.
机译:第一个长的基线Alma竞选活动将圆盘解决了年轻星级HL Tau的磁盘进入了许多轴对称明亮和黑暗的戒指。尽管HL TAU的年龄非常年轻,但这些结构被解释为存在(PROTO)行星的签名。基于磁盘行星相互作用,磁力驱动的盘结构和晶粒演化,ALMA图像触发了许多理论研究。特别兴趣的是磁盘的内部部分,预计地面行星将形成。然而,从HL中的这些区域排放。 Tau在所有ALMA波长上都是光学厚的,防止了表面密度谱的推导和晶粒尺寸分布。在这里,我们提出了最敏感的HL图像。 Tau与Karl G. Jansky非常大的阵列日期为7.0 mm波长,具有与ALMA图像相当的空间分辨率。在这种长波长下,HL TAU的灰尘发射是光学薄的,允许全面研究内盘。我们获得了(1-3)×10(-3)M圆点的总磁盘粉尘质量,具体取决于假设的不透明度和磁盘温度。我们的光学薄数据还表明了盘中的内部密度部分中的快速晶粒生长,碎裂和形成的密集丛。我们的结果表明HL。 Tau盘实际上可能在行星形成的早期阶段,并且行星尚未形成在差距中,而是在明亮的环中未来形成的过程中。

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