We develop simple, physically motivated models for drag-induced dust–gas streaming instabilities, which are thought to be crucial for clumping grains to form planetesimals in protoplanetary discs. The models explain, based on the physics of gaseous epicyclic motion and dust–gas drag forces, the most important features of the streaming instability and its simple generalization, the disc settling instability. Some of the key properties explained by our models include the sudden change in the growth rate of the streaming instability when the dust-to-gas mass ratio surpasses one, the slow growth rate of the streaming instability compared to the settling instability for smaller grains, and the main physical processes underlying the growth of the...
The streaming instability is a promising mechanism to induce the formation of planetesimals. Nonethe...
The streaming instability is a promising mechanism to induce the formation of planetesimals. Nonethe...
The streaming instability (SI) is a mechanism to concentrate solids in protoplanetary disks. Nonline...
We develop simple, physically motivated models for drag-induced dust–gas streaming instabilities, wh...
We identify and study a number of new, rapidly growing instabilities of dust grains in protoplanetar...
The streaming instability is a fundamental process that can drive dust-gas dynamics and ultimately p...
We present local simulations that verify the linear streaming instability that arises from aerodynam...
We present simulations of the non-linear evolution of streaming instabilities in protoplanetary disk...
According to the core accretion theory, rocky planets form by growing the initial micron-sized dust ...
We analyze the concentration of solid particles in vortices created and sustained by radial buoyancy...
The collective interaction of solid particulate matter with flowing gas is one of the fundamental pr...
We revisit, via a very simplified set of equations, a linear streaming instability (tech-nically an ...
International audienceWe revisit, via a very simplified set of equations, a linear streaming instabi...
The streaming instability (SI) is one of the most promising candidates for triggering planetesimal f...
International audienceWe revisit, via a very simplified set of equations, a linear streaming instabi...
The streaming instability is a promising mechanism to induce the formation of planetesimals. Nonethe...
The streaming instability is a promising mechanism to induce the formation of planetesimals. Nonethe...
The streaming instability (SI) is a mechanism to concentrate solids in protoplanetary disks. Nonline...
We develop simple, physically motivated models for drag-induced dust–gas streaming instabilities, wh...
We identify and study a number of new, rapidly growing instabilities of dust grains in protoplanetar...
The streaming instability is a fundamental process that can drive dust-gas dynamics and ultimately p...
We present local simulations that verify the linear streaming instability that arises from aerodynam...
We present simulations of the non-linear evolution of streaming instabilities in protoplanetary disk...
According to the core accretion theory, rocky planets form by growing the initial micron-sized dust ...
We analyze the concentration of solid particles in vortices created and sustained by radial buoyancy...
The collective interaction of solid particulate matter with flowing gas is one of the fundamental pr...
We revisit, via a very simplified set of equations, a linear streaming instability (tech-nically an ...
International audienceWe revisit, via a very simplified set of equations, a linear streaming instabi...
The streaming instability (SI) is one of the most promising candidates for triggering planetesimal f...
International audienceWe revisit, via a very simplified set of equations, a linear streaming instabi...
The streaming instability is a promising mechanism to induce the formation of planetesimals. Nonethe...
The streaming instability is a promising mechanism to induce the formation of planetesimals. Nonethe...
The streaming instability (SI) is a mechanism to concentrate solids in protoplanetary disks. Nonline...