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Gaps and Rings in an ALMA Survey of Disks in the Taurus Star-forming Region

机译:ALMA对金牛座恒星形成区盘的调查中的间隙和环

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Rings are the most frequently revealed substructure in Atacama Large Millimeter/submillimeter Array (ALMA) dust observations of protoplanetary disks, but their origin is still hotly debated. In this paper, we identify dust substructures in 12 disks and measure their properties to investigate how they form. This subsample of disks is selected from a high-resolution (~012) ALMA 1.33 mm survey of 32 disks in the Taurus star-forming region, which was designed to cover a wide range of brightness and to be unbiased to previously known substructures. While axisymmetric rings and gaps are common within our sample, spiral patterns and high-contrast azimuthal asymmetries are not detected. Fits of disk models to the visibilities lead to estimates of the location and shape of gaps and rings, the flux in each disk component, and the size of the disk. The dust substructures occur across a wide range of stellar mass and disk brightness. Disks with multiple rings tend to be more massive and more extended. The correlation between gap locations and widths, the intensity contrast between rings and gaps, and the separations of rings and gaps could all be explained if most gaps are opened by low-mass planets (super-Earths and Neptunes) in the condition of low disk turbulence (α?=?10?4). The gap locations are not well correlated with the expected locations of CO and N2 ice lines, so condensation fronts are unlikely to be a universal mechanism to create gaps and rings, though they may play a role in some cases.
机译:在原行星盘的阿塔卡马大毫米/亚毫米阵列(ALMA)尘埃观测中,环是最经常发现的子结构,但其起源仍受到人们的激烈争论。在本文中,我们确定了12个圆盘中的灰尘亚结构,并测量了它们的性质以研究它们的形成方式。该磁盘的子样本选自高分辨率(〜012)ALMA 1.33 mm对金牛座恒星形成区域中的32个磁盘的测量,该调查旨在涵盖广泛的亮度范围,并且不偏向先前已知的子结构。尽管在我们的样本中轴对称的环和间隙是常见的,但并未检测到螺旋图案和高对比度的方位角不对称性。磁盘模型对可见性的拟合将导致对间隙和环的位置和形状,每个磁盘组件中的通量以及磁盘大小的估计。尘埃子结构出现在广泛的恒星质量和磁盘亮度范围内。具有多个环的磁盘往往更大,并且扩展性更大。如果在低圆盘条件下低质量行星(超地球和海王星)打开了大多数间隙,那么间隙位置和宽度之间的相关性,环与间隙之间的强度对比以及环与间隙的分离都可以得到解释。湍流(α?=?10?4)。间隙位置与CO和N2冰线的预期位置没有很好的相关性,因此凝结锋线不太可能成为产生间隙和环的通用机制,尽管它们在某些情况下可能会起作用。
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