arXiv · 1909.06745
Investigating the gas-to-dust ratio in the protoplanetary disk of HD 142527
Abstract
We present ALMA observations of the $98.5~\mathrm{GHz}$ dust continuum and the $\mathrm{^{13}CO}~J = 1 - 0$ and $\mathrm{C^{18}O}~J = 1 - 0$ line emissions of the protoplanetary disk associated with HD~142527. The $98.5~\mathrm{GHz}$ continuum shows a strong azimuthal-asymmetric distribution similar to that of the previously reported $336~\mathrm{GHz}$ continuum, with a peak emission in dust concentrated region in the north. The disk is optically thin in both the $98.5~\mathrm{GHz}$ dust continuum and the $\mathrm{C^{18}O}~J = 1 - 0$ emissions. We derive the distributions of gas and dust surface densities, $Σ_\mathrm{g}$ and $Σ_\mathrm{d}$, and the dust spectral opacity index, $β$, in the disk from ALMA Band 3 and Band 7 data. In the analyses, we assume the local thermodynamic equilibrium and the disk temperature to be equal to the peak brightness temperature of $\mathrm{^{13}CO}~J = 3 - 2$ with a continuum emission. The gas-to-dust ratio, $\mathrm{G/D}$, varies azimuthally with a relation $\mathrm{G/D} \propto Σ_\mathrm{d}^{-0.53}$, and $β$ is derived to be $\approx 1$ and $\approx 1.7$ in the northern and southern regions of the disk, respectively. These results are consistent with the accumulation of larger dust grains in a higher pressure region. In addition, our results show that the peak $Σ_\mathrm{d}$ is located ahead of the peak $Σ_\mathrm{g}$. If the latter corresponds to a vortex of high gas pressure, the results indicate that the dust is trapped ahead of the vortex, as predicted by some theoretical studies.
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Kang-Lou Soon, Munetake Momose, Takayuki Muto, Takashi Tsukagoshi, Akimasa Kataoka, Tomoyuki Hanawa, Misato Fukagawa, Kazuya Saigo, Hiroshi Shibai. 2019-09-15. Investigating the gas-to-dust ratio in the protoplanetary disk of HD 142527. https://doi.org/10.1093/pasj%2Fpsz112
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