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首页> 外文期刊>The Astrophysical journal >THE STRUCTURE OF PRE-TRANSITIONAL PROTOPLANETARY DISKS. I. RADIATIVE TRANSFER MODELING OF THE DISK+CAVITY IN THE PDS 70 SYSTEM*
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THE STRUCTURE OF PRE-TRANSITIONAL PROTOPLANETARY DISKS. I. RADIATIVE TRANSFER MODELING OF THE DISK+CAVITY IN THE PDS 70 SYSTEM*

机译:过渡前行星的结构。 I. PDS 70系统中磁盘+空穴的辐射转移建模*

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摘要

Through detailed radiative transfer modeling, we present a disk+cavity model to simultaneously explain both the spectral energy distribution (SED) and Subaru H-band polarized light imaging for the pre-transitional protoplanetary disk PDS 70. In particular, we are able to match not only the radial dependence but also the absolute scale of the surface brightness of the scattered light. Our disk model has a cavity 65 AU in radius, which is heavily depleted of sub-micron-sized dust grains, and a small residual inner disk that produces a weak but still optically thick near-IR excess in the SED. To explain the contrast of the cavity's edge in the Subaru image, a factor of ~1000 depletion for the sub-micron-sized dust inside the cavity is required. The total dust mass of the disk may be on the order of 10–4 M ☉, only weakly constrained due to the lack of long-wavelength observations and the uncertainties in the dust model. The scale height of the sub-micron-sized dust is ~6 AU at the cavity edge, and the cavity wall is optically thick in the vertical direction at H-band. PDS 70 is not a member of the class of (pre-)transitional disks identified by Dong et?al., whose members only show evidence of the cavity in the millimeter-size dust but not the sub-micron-sized dust in resolved images. The two classes of (pre-)transitional disks may form through different mechanisms, or they may simply be at different evolution stages in the disk-clearing process.
机译:通过详细的辐射传输建模,我们提出了一个圆盘+腔模型,以同时解释平移前原行星盘PDS 70的光谱能量分布(SED)和斯巴鲁H波段偏振光成像。特别是,我们能够匹配不仅径向相关,而且散射光的表面亮度的绝对比例也是如此。我们的磁盘模型有一个半径为65 AU的腔体,该腔体严重消耗了亚微米级的尘埃颗粒,还有一个小的残留内部磁盘,该磁盘在SED中产生了一个微弱但仍光学上较厚的近红外过量。为了在斯巴鲁图像中解释空腔边缘的对比度,需要为空腔内部的亚微米级灰尘消耗约1000的因子。圆盘的总尘埃质量可能在10–4 M the的数量级,由于缺乏长波观测和尘埃模型的不确定性而受到的约束很小。在腔边缘处,亚微米级灰尘的水垢高度为〜6 AU,腔壁在H波段的垂直方向上光学上较厚。 PDS 70不是由Dong等人识别的(过渡)磁盘类的成员,该磁盘的成员仅显示毫米级尘埃中的空腔证据,而在分辨图像中不显示亚微米级尘埃。 。这两类(过渡)磁盘可以通过不同的机制形成,或者在磁盘清除过程中可能处于不同的演化阶段。
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