ALMA continuum observations of the protoplanetary disk AS 209. Evidence of multiple gaps opened by a single planet
D. Fedele (1), M. Tazzari (2), R. Booth (2), L. Testi (3), C. Clarke, (2), I. Pascucci (4), A. Kospal (5), D.Semenov (6), S. Bruderer, Th. Henning, (6), R. Teague (6) ((1) INAF-Osservatorio Astrofisico di Arcetri, (2), Institute of Astronomy, University of Cambridge

TL;DR
This study uses high-resolution ALMA observations and hydrodynamical simulations to analyze the protoplanetary disk AS 209, revealing multiple gaps likely caused by one or two planets, and suggesting rapid giant planet formation within 1 million years.
Contribution
It demonstrates that a single planet can create multiple gaps in a protoplanetary disk, supported by combined observational data and hydrodynamical modeling.
Findings
Outer gap consistent with a ~0.8 M_J planet
Inner gap constrains inner planet mass to <0.1 M_J
Disk viscosity inferred to be very low (<10^-4)
Abstract
The paper presents new high angular resolution ALMA 1.3 mm dust continuum observations of the protoplanetary system AS 209 in the Ophiuchus star forming region. The dust continuum emission is characterized by a main central core and two prominent rings at au and au intervaled by two gaps at at au and au. The two gaps have different widths and depths, with the inner one being narrower and shallower. We determined the surface density of the millimeter dust grains using the 3D radiative transfer disk code \textsc{dali}. According to our fiducial model the inner gap is partially filled with millimeter grains while the outer gap is largely devoid of dust. The inferred surface density is compared to 3D hydrodynamical simulations (FARGO-3D) of planet-disk interaction. The outer dust gap is consistent with the presence of a giant planet ($M_{\rm planet}…
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