We aim to derive a simple analytic model to understand the essential properties of vertically settling growing dust grains in laminar protoplanetary discs. Separating the vertical dynamics from the motion in the disc mid-plane, we integrate the equations of motion for both a linear and an exponential grain growth rate. Numerical integrations are performed for more complex growth models. We find that the settling efficiency depends on the value of the dimensionless parameter γ , which characterizes the relative efficiency of grain growth with respect to the gas drag. Since γ is expected to be of the same order as the initial dust-to-gas ratio in the disc (≃10−2), grain growth enhances the energy dissipation of the dust particles and improves...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
We aim to study the migration of growing dust grains in protoplanetary discs, where growth and migra...
We aim to study the migration of growing dust grains in protoplanetary discs, where growth and migra...
We aim to derive a simple analytic model to understand the essential properties of vertically settli...
International audienceWe aim to derive a simple analytic model to understand the essential propertie...
International audienceWe aim to derive a simple analytic model to understand the essential propertie...
International audienceWe aim to derive a simple analytic model to understand the essential propertie...
We aim to derive a simple analytic model to understand the essential properties of vertically settli...
In a series of papers, we present a comprehensive analytic study of the global motion of growing dus...
In a series of papers, we present a comprehensive analytic study of the global motion of growing dus...
International audienceIn a series of papers, we present a comprehensive analytic study of the global...
International audienceIn a series of papers, we present a comprehensive analytic study of the global...
International audienceIn a series of papers, we present a comprehensive analytic study of the global...
To form meter-sized pre-planetesimals in protoplanetary discs, dust aggregates have to decouple from...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
We aim to study the migration of growing dust grains in protoplanetary discs, where growth and migra...
We aim to study the migration of growing dust grains in protoplanetary discs, where growth and migra...
We aim to derive a simple analytic model to understand the essential properties of vertically settli...
International audienceWe aim to derive a simple analytic model to understand the essential propertie...
International audienceWe aim to derive a simple analytic model to understand the essential propertie...
International audienceWe aim to derive a simple analytic model to understand the essential propertie...
We aim to derive a simple analytic model to understand the essential properties of vertically settli...
In a series of papers, we present a comprehensive analytic study of the global motion of growing dus...
In a series of papers, we present a comprehensive analytic study of the global motion of growing dus...
International audienceIn a series of papers, we present a comprehensive analytic study of the global...
International audienceIn a series of papers, we present a comprehensive analytic study of the global...
International audienceIn a series of papers, we present a comprehensive analytic study of the global...
To form meter-sized pre-planetesimals in protoplanetary discs, dust aggregates have to decouple from...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
We aim to study the migration of growing dust grains in protoplanetary discs, where growth and migra...
We aim to study the migration of growing dust grains in protoplanetary discs, where growth and migra...