The thermal structure of a protoplanetary disc is regulated by the opacity that dust grains provide. However, previous works have often considered simplified prescriptions for the dust opacity in hydrodynamical disc simulations, for example, by considering only a single particle size. In the present work, we perform 2D hydrodynamical simulations of protoplanetary discs where the opacity is self-consistently calculated for the dust population, taking into account the particle size, composition, and abundance. We first compared simulations utilizing single grain sizes to two different multi-grain size distributions at different levels of turbulence strengths, parameterized through the α-viscosity, and different gas surface densities. Assuming...
The size and density of dust grains determine their response to gas drag in protoplanetary discs. Ae...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
International audienceThe size and density of dust grains determine their response to gas drag in pr...
The thermal structure of a protoplanetary disc is regulated by the opacity that dust grains provide....
Protoplanetary discs surround young stars for the first few million years after their formation and ...
Protoplanetary disks consist of matter in both gas and solid form. The sizes of the solid particles,...
The growth of dust particles into planet embryos needs to circumvent the "radial-drift barrier", i.e...
The growth of dust particles into planet embryos needs to circumvent the “radial-drift bar...
International audienceThe growth of dust particles into planet embryos needs to circumvent the "radi...
International audienceThe growth of dust particles into planet embryos needs to circumvent the "radi...
International audienceThe growth of dust particles into planet embryos needs to circumvent the "radi...
International audienceThe growth of dust particles into planet embryos needs to circumvent the "radi...
The size and density of dust grains determine their response to gas drag in protoplanetary discs. Ae...
The size and density of dust grains determine their response to gas drag in protoplanetary discs. Ae...
We investigate the behaviour of dust in protoplanetary disks under the action of gas drag in the pre...
The size and density of dust grains determine their response to gas drag in protoplanetary discs. Ae...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
International audienceThe size and density of dust grains determine their response to gas drag in pr...
The thermal structure of a protoplanetary disc is regulated by the opacity that dust grains provide....
Protoplanetary discs surround young stars for the first few million years after their formation and ...
Protoplanetary disks consist of matter in both gas and solid form. The sizes of the solid particles,...
The growth of dust particles into planet embryos needs to circumvent the "radial-drift barrier", i.e...
The growth of dust particles into planet embryos needs to circumvent the “radial-drift bar...
International audienceThe growth of dust particles into planet embryos needs to circumvent the "radi...
International audienceThe growth of dust particles into planet embryos needs to circumvent the "radi...
International audienceThe growth of dust particles into planet embryos needs to circumvent the "radi...
International audienceThe growth of dust particles into planet embryos needs to circumvent the "radi...
The size and density of dust grains determine their response to gas drag in protoplanetary discs. Ae...
The size and density of dust grains determine their response to gas drag in protoplanetary discs. Ae...
We investigate the behaviour of dust in protoplanetary disks under the action of gas drag in the pre...
The size and density of dust grains determine their response to gas drag in protoplanetary discs. Ae...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
International audienceThe size and density of dust grains determine their response to gas drag in pr...