论文标题

ds tau的原星磁盘中灰尘粒度的径向剖面

The Radial Profile of Dust Grain Size in the Protoplanetary Disk of DS Tau

论文作者

Li, Dafa, Liu, Yao, Wang, Hongchi, Wang, Yao, Ma, Yuehui

论文摘要

尚不能够很好地理解原行星磁盘中的尘埃颗粒如何克服快速径向漂移并从微米尺寸颗粒到行星的快速散发。关键是要寻找尘埃积累和生长作为磁盘中半径的函数的证据。我们通过将多波段Alma观测值与自洽的辐射转移模型拟合,研究了DS TAU磁盘中晶粒尺寸的径向谱。拟合最佳的谷物尺寸范围从内部磁盘中的厘米降低到外部区域的30微米。这种内而外的减少趋势与尘埃进化的理论一致。基于最佳拟合模型,我们发现在间隙中耗尽了2个木星质量的灰尘。通过考虑气体与盘状质量比,损失的质量足以形成由文献流体动力模拟推断出的3.5木星质量行星。此外,我们的建模还表明,在间隙和环之间的界面区域,晶粒尺寸曲线显示出不连续性,其幅度取决于辐射传递分析中采用的灰尘模型。需要在较高的角度分辨率下进行的未来多波长观测,以更好地限制粒度及其在磁盘子结构附近的变化。

How do dust grains in protoplanetary disks overcome rapid radial drift and grow from micron size particles to planets is not well understood. The key is to search for evidence of dust accumulation and growth as a function of radius in the disk. We investigate the radial profile of grain size in the DS Tau disk by fitting multi-band ALMA observations with self-consistent radiative transfer models. The best-fit grain sizes range from centimeters in the inner disk down to 30 micron in the outer regions. Such an inside-out decreasing tendency is consistent with theories of dust evolution. Based on the best-fit model, we find that dust of 2 Jupiter masses has been depleted within the gap. By taking the gas-to-dust mass ratio into account, the lost mass is enough to form the 3.5 Jupiter mass planet inferred by literature hydrodynamic simulations. Moreover, our modeling also indicates that at the interface region between the gap and the ring, the grain size profile shows a discontinuity, with its amplitude dependent on the dust model adopted in the radiative transfer analysis. Future multi-wavelength observations at higher angular resolutions are required to better constrain the grain size and its variation in the vicinity of disk substructures.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源