Due to the gas-rich environments of early circumstellar disks, the gravitational collapse of cool, dense regions of the disk form fragments largely composed of gas. During formation, disk fragments may attain increased metallicities as they interact with the surrounding disk material, whether through particle migration to pressure maxima or through mutual gravitational interaction. In this paper, we investigate the ability of fragments to collect and retain a significant solid component through gas-particle interactions in high-resolution 3D self- gravitating shearing-box simulations. The formation of axisymmetric perturbations associated with gravitational instabilities allows particles of intermediate sizes to concentrate through aerodyna...
Context. There is growing evidence that massive stars grow by disk accretion in a similar way to the...
We carry out three dimensional smoothed particle hydrodynamics simulations to study the role of grav...
Massive circumstellar disks are prone to gravitational instabilities, which trigger the formation of...
We investigate the coupling between rock-size solids and gas during the for-mation of gas giant plan...
Aims. We investigate the dynamics of gaseous clumps formed via gravitational fragmentation in young ...
Aims. We investigate the dynamics of gaseous clumps formed via gravitational fragmentation in young ...
Planet formation in self-gravitating disks typically focuses on the rapid collapse (fragmentation) o...
I have carried out three-dimensional numerical simulations of self-gravitating discs to determine un...
In this paper, we model the chemical evolution of a 0.25 M⊙ protoplanetary disc surrounding a 1 M⊙ s...
This is a companion data set to the paper Backus and Quinn 2016. The initial conditions and final r...
In this paper, we model the chemical evolution of a 0.25 M⊙ protoplanetary disc surrounding a 1 M⊙ s...
Giant planet formation in the core accretion plus gas capture (CA) paradigm is predicated by the for...
Giant planet formation in the core accretion plus gas capture (CA) paradigm is predicated by the for...
In this paper, we model the chemical evolution of a 0.25 M⊙ protoplanetary disc surrounding a 1 M⊙ s...
Context. There is growing evidence that massive stars grow by disk accretion in a similar way to the...
Context. There is growing evidence that massive stars grow by disk accretion in a similar way to the...
We carry out three dimensional smoothed particle hydrodynamics simulations to study the role of grav...
Massive circumstellar disks are prone to gravitational instabilities, which trigger the formation of...
We investigate the coupling between rock-size solids and gas during the for-mation of gas giant plan...
Aims. We investigate the dynamics of gaseous clumps formed via gravitational fragmentation in young ...
Aims. We investigate the dynamics of gaseous clumps formed via gravitational fragmentation in young ...
Planet formation in self-gravitating disks typically focuses on the rapid collapse (fragmentation) o...
I have carried out three-dimensional numerical simulations of self-gravitating discs to determine un...
In this paper, we model the chemical evolution of a 0.25 M⊙ protoplanetary disc surrounding a 1 M⊙ s...
This is a companion data set to the paper Backus and Quinn 2016. The initial conditions and final r...
In this paper, we model the chemical evolution of a 0.25 M⊙ protoplanetary disc surrounding a 1 M⊙ s...
Giant planet formation in the core accretion plus gas capture (CA) paradigm is predicated by the for...
Giant planet formation in the core accretion plus gas capture (CA) paradigm is predicated by the for...
In this paper, we model the chemical evolution of a 0.25 M⊙ protoplanetary disc surrounding a 1 M⊙ s...
Context. There is growing evidence that massive stars grow by disk accretion in a similar way to the...
Context. There is growing evidence that massive stars grow by disk accretion in a similar way to the...
We carry out three dimensional smoothed particle hydrodynamics simulations to study the role of grav...
Massive circumstellar disks are prone to gravitational instabilities, which trigger the formation of...