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      Gas and Dust Shadows in the TW Hydrae Disk

      , , , , , ,
      The Astrophysical Journal
      American Astronomical Society

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          Abstract

          We present new observations of CO J = 2 − 1 emission from the protoplanetary disk around TW Hya. Emission is detected out to 240 au (4″) and found to exhibit azimuthal variations up to 20% beyond 180 au (3″), with the west side of the disk brighter than the east. This asymmetry is interpreted as tracing the shadow previously seen in scattered light. A re-analysis of the multi-epoch observations of the dust shadow in scattered light from Debes et al. suggests that an oscillatory motion would provide a better model of the temporal evolution of the dust shadow rather than orbital motion. Both models predict an angular offset between the dust shadow and the gas shadow of up to ∼100°. We attribute this offset to the finite rate at which dust grains and gas molecules can exchange heat, dominated by the collisional rate between gas molecules and dust grains, t coll. The angular offsets derived are equivalent to collisional timescales that range from the near-instantaneous up to t coll ∼ 10 yr, depending on whether a straight or curved dust shadow, as suggested by Hubble Space Telescope observations reported by Debes et al., is adopted. The inferred range of t coll are consistent with those predictions based on representative gas densities, temperatures, gas-to-dust ratios and grain sizes. These results represent the first time empirical constraints can be placed on t coll.

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          Most cited references49

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          Gaia Data Release 2

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            The Disk Substructures at High Angular Resolution Project (DSHARP). I. Motivation, Sample, Calibration, and Overview

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              RINGED SUBSTRUCTURE AND A GAP AT 1 au IN THE NEAREST PROTOPLANETARY DISK

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                Author and article information

                Contributors
                Journal
                The Astrophysical Journal
                ApJ
                American Astronomical Society
                0004-637X
                1538-4357
                May 13 2022
                May 01 2022
                May 13 2022
                May 01 2022
                : 930
                : 2
                : 144
                Article
                10.3847/1538-4357/ac67a3
                dbe04490-789c-4301-946b-4e70d333cf79
                © 2022

                http://creativecommons.org/licenses/by/4.0/

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