The streaming instability (SI) is a mechanism to aerodynamically concentrate solids in protoplanetary disks and trigger the formation of planetesimals. The SI produces strong particle clumping if the ratio of solid to gas surface density - an effective metallicity - exceeds a critical value. This critical value depends on particle sizes and disk conditions such as radial drift-inducing pressure gradients and levels of turbulence. To quantify these thresholds, we perform a suite of vertically stratified SI simulations over a range of dust sizes and metallicities. We find a critical metallicity as low as 0.4% for the optimum particle sizes and standard radial pressure gradients (normalized value of Π = 0.05). This subsolar metallicity is lowe...
The collapse of dust particle clouds directly to kilometer-sized planetesimals is a promising way to...
Forming macroscopic solid bodies in circumstellar discs requires local dust concentration levels sig...
Context. Streaming instability can be a very efficient way of overcoming growth and drift barriers t...
The streaming instability (SI) is a mechanism to concentrate solids in protoplanetary disks. Nonline...
According to the core accretion theory, rocky planets form by growing the initial micron-sized dust ...
Laboratory experiments indicate that direct growth of silicate grains via mutual collisions can only...
Laboratory experiments indicate that direct growth of silicate grains via mutual collisions can only...
Context. Streaming instability can be a very efficient way of overcoming growth and drift barriers t...
Laboratory experiments indicate that direct growth of silicate grains via mutual collisions can only...
Laboratory experiments indicate that direct growth of silicate grains via mutual collisions can only...
Forming macroscopic solid bodies in circumstellar discs requires local dust concentration levels sig...
The streaming instability provides an efficient way of overcoming the growth barriers in the initial...
Forming macroscopic solid bodies in circumstellar discs requires local dust concentration levels sig...
The streaming instability provides an efficient way of overcoming the growth barriers in the initial...
Forming macroscopic solid bodies in circumstellar discs requires local dust concentration levels sig...
The collapse of dust particle clouds directly to kilometer-sized planetesimals is a promising way to...
Forming macroscopic solid bodies in circumstellar discs requires local dust concentration levels sig...
Context. Streaming instability can be a very efficient way of overcoming growth and drift barriers t...
The streaming instability (SI) is a mechanism to concentrate solids in protoplanetary disks. Nonline...
According to the core accretion theory, rocky planets form by growing the initial micron-sized dust ...
Laboratory experiments indicate that direct growth of silicate grains via mutual collisions can only...
Laboratory experiments indicate that direct growth of silicate grains via mutual collisions can only...
Context. Streaming instability can be a very efficient way of overcoming growth and drift barriers t...
Laboratory experiments indicate that direct growth of silicate grains via mutual collisions can only...
Laboratory experiments indicate that direct growth of silicate grains via mutual collisions can only...
Forming macroscopic solid bodies in circumstellar discs requires local dust concentration levels sig...
The streaming instability provides an efficient way of overcoming the growth barriers in the initial...
Forming macroscopic solid bodies in circumstellar discs requires local dust concentration levels sig...
The streaming instability provides an efficient way of overcoming the growth barriers in the initial...
Forming macroscopic solid bodies in circumstellar discs requires local dust concentration levels sig...
The collapse of dust particle clouds directly to kilometer-sized planetesimals is a promising way to...
Forming macroscopic solid bodies in circumstellar discs requires local dust concentration levels sig...
Context. Streaming instability can be a very efficient way of overcoming growth and drift barriers t...