Investigating the dynamical evolution of dust grains in proto-planetary discs is a key issue to understand how planets should form. We identify under which conditions dust settling can be constrained by high angular resolution observations at mm wavelengths, and which observational strategies are suited for such studies. Exploring a large range of models, we generate synthetic images of discs with different degrees of dust settling, and simulate high angular resolution (˜0.05-0.3 arcsec) Atacama Large Millimeter/submillimeter Array (ALMA) observations of these synthetic discs. The resulting data sets are then analysed blindly with homogeneous disc models (where dust and gas are totally mixed) and the derived disc parameters are used as trac...
Context. The Atacama Large Millimeter/submillimeter Array (ALMA) will have the necessary resolution ...
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...
Investigating the dynamical evolution of dust grains in proto-planetary discs is a key issue to unde...
Investigating the dynamical evolution of dust grains in proto-planetary disks is a key issue to und...
Investigating the dynamical evolution of dust grains in proto-planetary disks is a key iss...
Abstract. Investigating the dynamical evolution of dust grains in proto-planetary disks is a key iss...
International audienceAims. We aim to study vertical settling and radial drift of dust in protoplane...
Aims. We aim to study vertical settling and radial drift of dust in protoplanetary disks from a diff...
Planets form in Protoplanetary disks. New instruments like ALMA and VLT / SPHERE are revealing featu...
Context. The Atacama Large Millimeter/submillimeter Array (ALMA) will have the necessary resolution ...
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...
Investigating the dynamical evolution of dust grains in proto-planetary discs is a key issue to unde...
Investigating the dynamical evolution of dust grains in proto-planetary disks is a key issue to und...
Investigating the dynamical evolution of dust grains in proto-planetary disks is a key iss...
Abstract. Investigating the dynamical evolution of dust grains in proto-planetary disks is a key iss...
International audienceAims. We aim to study vertical settling and radial drift of dust in protoplane...
Aims. We aim to study vertical settling and radial drift of dust in protoplanetary disks from a diff...
Planets form in Protoplanetary disks. New instruments like ALMA and VLT / SPHERE are revealing featu...
Context. The Atacama Large Millimeter/submillimeter Array (ALMA) will have the necessary resolution ...
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...