Constraining dust properties of planet-forming disks via high-angular-resolution observations is fundamental to understanding how solids are trapped in substructures and how dust growth may be favored or accelerated therein. We use ALMA dust continuum observations of the Molecules with ALMA at Planet-forming Scales (MAPS) disks and explore a large parameter space to constrain the radial distribution of solid mass and maximum grain size in each disk, including or excluding dust scattering. In the nonscattering model, the dust surface density and maximum grain size profiles decrease from the inner disks to the outer disks, with local maxima at the bright ring locations, as expected from dust trapping models. The inferred maximum grain sizes f...
We present ALMA observations of the 880 μm continuum and CO J = 3–2 line emission from the transiti...
International audienceInvestigating the dynamical evolution of dust grains in proto-planetary discs ...
The Molecules with ALMA at Planet-forming Scales Large Program (MAPS LP) surveyed the chemical struc...
Constraining dust properties of planet-forming disks via high-angular-resolution observations is fun...
International audienceConstraining dust properties of planet-forming disks via high-angular-resoluti...
The concentric gaps and rings commonly observed in protoplanetary disks in millimeter continuum emis...
The Molecules with ALMA at Planet-forming Scales (MAPS) Large Program provides a detailed, high-reso...
Gas mass remains one of the most difficult protoplanetary disk properties to constrain. With much of...
Rings are the most frequently revealed substructure in ALMA dust observations of protoplanetary disk...
The Molecules with ALMA at Planet-forming Scales (MAPS) Large Program provides a detailed, high-reso...
Aims. We attempt to explain grain growth to mm sized particles and their retention in the outer regi...
Funding: I.C. was supported by NASA through the NASA Hubble Fellowship grant HST-HF2-51405.001-A awa...
We present ALMA observations of the 880 μm continuum and CO J = 3–2 line emission from the transiti...
International audienceInvestigating the dynamical evolution of dust grains in proto-planetary discs ...
The Molecules with ALMA at Planet-forming Scales Large Program (MAPS LP) surveyed the chemical struc...
Constraining dust properties of planet-forming disks via high-angular-resolution observations is fun...
International audienceConstraining dust properties of planet-forming disks via high-angular-resoluti...
The concentric gaps and rings commonly observed in protoplanetary disks in millimeter continuum emis...
The Molecules with ALMA at Planet-forming Scales (MAPS) Large Program provides a detailed, high-reso...
Gas mass remains one of the most difficult protoplanetary disk properties to constrain. With much of...
Rings are the most frequently revealed substructure in ALMA dust observations of protoplanetary disk...
The Molecules with ALMA at Planet-forming Scales (MAPS) Large Program provides a detailed, high-reso...
Aims. We attempt to explain grain growth to mm sized particles and their retention in the outer regi...
Funding: I.C. was supported by NASA through the NASA Hubble Fellowship grant HST-HF2-51405.001-A awa...
We present ALMA observations of the 880 μm continuum and CO J = 3–2 line emission from the transiti...
International audienceInvestigating the dynamical evolution of dust grains in proto-planetary discs ...
The Molecules with ALMA at Planet-forming Scales Large Program (MAPS LP) surveyed the chemical struc...