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首页> 外文期刊>The Astrophysical Journal. Letters >Probing the Cold Dust Emission in the AB Aur Disk: A Dust Trap in a Decaying Vortex?
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Probing the Cold Dust Emission in the AB Aur Disk: A Dust Trap in a Decaying Vortex?

机译:探测AB AUR磁盘的冷尘排放:腐烂涡旋中的灰尘陷阱?

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摘要

One serious challenge for planet formation is the rapid inward drift of pebble-sized dust particles in protoplanetary disks. Dust trapping at local maxima in the disk gas pressure has received much theoretical attention but still lacks observational support. The cold dust emission in the AB Aur disk forms an asymmetric ring at a radius of about 120 au, which is suggestive of dust trapping in a gas vortex. We present high spatial resolution (0.'' 58 x 0.'' 78 approximate to 80 x 110 au) NOEMA observations of the 1.12 mm and 2.22 mm dust continuum emission from the AB Aur disk. Significant azimuthal variations of the flux ratio at both wavelengths indicate a size segregation of the large dust particles along the ring. Our continuum images also show that the intensity variations along the ring are smaller at 2.22 mm than at 1.12 mm, contrary to what dust trapping models with a gas vortex have predicted. Our two-fluid (gas+dust) hydrodynamical simulations demonstrate that this feature is well explained if the gas vortex has started to decay due to turbulent diffusion, and dust particles are thus losing the azimuthal trapping on different timescales depending on their size. The comparison between our observations and simulations allows us to constrain the size distribution and the total mass of solid particles in the ring, which we find to be of the order of 30 Earth masses, enough to form future rocky planets.
机译:行星形成的一个严重挑战是原始圆盘上的鹅卵石大小的粒度粉尘颗粒的快速进入。在磁盘气体压力下局部最大值的灰尘俘获已经获得了很大的理论关注,但仍然缺乏观察支持。 AB Aur盘中的冷粉尘发射在约120AU的半径处形成不对称环,这是一种暗示气体涡旋中的灰尘捕获。我们呈现高空间分辨率(0.''58 x 0.'78近似到80 x 110 au)Noema观察的1.12 mm和2.22 mm的粉尘连续从AB AUS磁盘排放。两个波长的磁通比的显着方位角变化表示沿着环的大灰尘颗粒的尺寸偏析。我们的连续图像还表明,沿环的强度变化小于1.22毫米,比1.12毫米较小,相反的是具有气体涡流的灰尘俘获模型。我们的双流体(气体+灰尘)流体动力学模拟表明,如果由于湍流扩散,气体涡流已经开始衰减,并且灰尘颗粒根据其尺寸损失不同时间尺寸的灰尘颗粒,则该特征很好地说明了很好的说明。我们的观察和模拟之间的比较使我们能够约束戒指中的尺寸分布和固体颗粒的总质量,我们发现是30个地球群众的顺序,足以形成未来的岩石行星。

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