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Modeling Dust Emission of HL Tau Disk Based on Planet-Disk Interactions

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abstract

We use extensive global two-dimensional hydrodynamic disk gas+dust simulations with embedded planets, coupled with three dimensional radiative transfer calculations, to model the dust ring and gap structures in the HL Tau protoplanetary disk observed with the Atacama Large Millimeter/Submillimeter Array (ALMA). We include the self-gravity of disk gas and dust components and make reasonable choices of disk parameters, assuming an already settled dust distribution and no planet migration. We can obtain quite adequate fits to the observed dust emission using three planets with masses 0.35, 0.17, and 0.26 $M_{Jup}$ at 13.1, 33.0, and 68.6 AU, respectively. Implications for the planet formation as well as the limitations of this scenario are discussed.

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astro-ph.EP 1

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2026 1

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UNVERDICTED 1

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Substructures in Planet-Forming Disks with the SKAO

astro-ph.EP · 2026-06-24 · unverdicted · novelty 2.0 · 2 refs

This review chapter discusses open questions on protoplanetary disk substructures and how SKA-Mid continuum observations at 12.5 GHz can help resolve them.

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  • Substructures in Planet-Forming Disks with the SKAO astro-ph.EP · 2026-06-24 · unverdicted · none · ref 16 · 2 links · internal anchor

    This review chapter discusses open questions on protoplanetary disk substructures and how SKA-Mid continuum observations at 12.5 GHz can help resolve them.