International audienceWe study the dynamics of a viscous protoplanetary disc hosting a population of dust grains with a range of sizes. We compute steady-state solutions and show that the radial motion of both the gas and the dust can deviate substantially from those for a single-size dust population. Although the aerodynamic drag from the dust on the gas is weaker than in the case where all grains are optimally coupled to the gas, the cumulative `back-reaction' of the dust particles can still alter the gas dynamics significantly. In typical protoplanetary discs, the net effect of the dust back-reaction decreases the gas accretion flow compared to the dust-free (viscous) case, even for dust-to-gas ratios of the order of 1 per cent. In the o...
To form meter-sized pre-planetesimals in protoplanetary discs, dust aggregates have to decouple from...
Context. The extent of the gas in protoplanetary discs is observed to be universally larger than the...
A key problem in protoplanetary disc evolution is understanding the efficiency of dust radial drift....
International audienceWe study the dynamics of a viscous protoplanetary disc hosting a population of...
We study the dynamics of a viscous protoplanetary disc hosting a population of dust grains with a ra...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
We consider the dynamics of dust and gas during the clearing of protoplanetary discs. We work within...
In protoplanetary disks drag forces determine the interaction between gas and dust. Typically, dust ...
We investigate the simultaneous evolution of dust and gas density profiles at a radial pressure bump...
Protoplanetary disks often appear as multiple concentric rings in dust continuum emission maps and s...
International audienceWe present 3D smoothed particle hydrodynamics simulations of protoplanetary di...
We present 3D smoothed particle hydrodynamics simulations of protoplanetary discs undergoing a flyby...
We use numerical simulations to investigate the coupled dynamics of gas and dust in protoplanetary d...
In evolved and dusty circumstellar discs, two planets with masses comparable to Jupiter and Saturn t...
To form meter-sized pre-planetesimals in protoplanetary discs, dust aggregates have to decouple from...
Context. The extent of the gas in protoplanetary discs is observed to be universally larger than the...
A key problem in protoplanetary disc evolution is understanding the efficiency of dust radial drift....
International audienceWe study the dynamics of a viscous protoplanetary disc hosting a population of...
We study the dynamics of a viscous protoplanetary disc hosting a population of dust grains with a ra...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
We consider the dynamics of dust and gas during the clearing of protoplanetary discs. We work within...
In protoplanetary disks drag forces determine the interaction between gas and dust. Typically, dust ...
We investigate the simultaneous evolution of dust and gas density profiles at a radial pressure bump...
Protoplanetary disks often appear as multiple concentric rings in dust continuum emission maps and s...
International audienceWe present 3D smoothed particle hydrodynamics simulations of protoplanetary di...
We present 3D smoothed particle hydrodynamics simulations of protoplanetary discs undergoing a flyby...
We use numerical simulations to investigate the coupled dynamics of gas and dust in protoplanetary d...
In evolved and dusty circumstellar discs, two planets with masses comparable to Jupiter and Saturn t...
To form meter-sized pre-planetesimals in protoplanetary discs, dust aggregates have to decouple from...
Context. The extent of the gas in protoplanetary discs is observed to be universally larger than the...
A key problem in protoplanetary disc evolution is understanding the efficiency of dust radial drift....