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首页> 外文期刊>The Astrophysical journal >THE INNER RIM OF YSO DISKS: EFFECTS OF DUST GRAIN EVOLUTION
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THE INNER RIM OF YSO DISKS: EFFECTS OF DUST GRAIN EVOLUTION

机译:YSO盘的内边缘:沙粒演变的影响

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Dust-grain growth and settling are the first steps toward planet formation. An understanding of dust physics is therefore integral to a complete theory of the planet formation process. In this paper we explore the possibility of using the dust evaporation front in YSO disks ("the inner rim") as a probe of the dust physics operating in circumstellar disks. The geometry of the rim depends sensitively on the composition and spatial distribution of dust. Using radiative transfer and hydrostatic equilibrium calculations we demonstrate that dust growth and settling can curve the evaporation front dramatically (from a cylindrical radius of about 0.5 AU in the disk midplane to 1.2 AU in the disk upper layers for an A0 star). We compute synthetic images and interferometric visibilities for our representative rim models and show that the current generation of near-IR long-baseline interferometers (VLTI, CHARA) can strongly constrain the dust properties of circumstellar disks, shedding light on the relatively poorly understood processes of grain growth, settling and turbulent mixing.
机译:尘埃的增长和沉降是行星形成的第一步。因此,对尘埃物理学的理解对于行星形成过程的完整理论是不可或缺的。在本文中,我们探索了使用YSO盘中的粉尘蒸发锋面(“内缘”)作为绕星云盘中运行的粉尘物理现象的可能性的可能性。轮辋的几何形状敏感地取决于灰尘的成分和空间分布。使用辐射转移和静水力平衡计算,我们证明了粉尘的生长和沉降可以使蒸发锋线显着弯曲(对于A0星,从圆盘中平面的圆柱半径约为0.5 AU,到圆盘上层的圆柱半径为1.2 AU)。我们为代表性的边缘模型计算了合成图像和干涉可见性,并表明当前一代的近红外长基线干涉仪(VLTI,CHARA)可以极大地限制恒星盘的粉尘特性,从而使人们对相对较少理解的过程有所了解。谷物生长,沉降和湍流混合。

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