Self-gravitating protostellar discs are unstable to fragmentation if the gas can cool on a time-scale that is short compared with the orbital period. We use a combination of hydrodynamic simulations and N-body orbit integrations to study the long-term evolution of a fragmenting disc with an initial mass ratio to the star of M-disc/M-* = 0.1. For a disc that is initially unstable across a range of radii, a combination of collapse and subsequent accretion yields substellar objects with a spectrum of masses extending (for a Solar-mass star) up to approximate to0.01 M-.. Subsequent gravitational evolution ejects most of the lower mass objects within a few million years, leaving a small number of very massive planets or brown dwarfs in eccentric...
I have carried out three-dimensional numerical simulations of self-gravitating discs to determine un...
We suggest that low-mass hydrogen-burning stars like the Sun should sometimes form with massive exte...
Aims. We numerically studied the formation of giant planet (GP) and brown dwarf (BD) embry...
Self-gravitating protostellar discs are unstable to fragmentation if the gas can cool on a time scal...
A large fraction of brown dwarfs and low-mass hydrogen-burning stars may form by gravitational fragm...
A large fraction of brown dwarfs and low-mass hydrogen-burning stars may form by gravitational fragm...
We investigate how a protoplanetary disc’s susceptibility to gravitational instabilities and fragmen...
A large fraction of brown dwarfs and low-mass hydrogen-burning stars may form by gravitational fragm...
Context. Around 30 per cent of the observed exoplanets that orbit M dwarf stars are gas giants that ...
Context. Around 30 per cent of the observed exoplanets that orbit M dwarf stars are gas giants that ...
Context. Around 30 per cent of the observed exoplanets that orbit M dwarf stars are gas giants that ...
We carry out global three-dimensional radiation hydrodynamical simulations of self-gravitating accre...
The origin of very low-mass hydrogen-burning stars, brown dwarfs (BDs), and planetary-mass objects (...
We suggest that low-mass hydrogen-burning stars like the Sun should sometimes form with massive exte...
We suggest that low-mass hydrogen-burning stars like the Sun should sometimes form with massive exte...
I have carried out three-dimensional numerical simulations of self-gravitating discs to determine un...
We suggest that low-mass hydrogen-burning stars like the Sun should sometimes form with massive exte...
Aims. We numerically studied the formation of giant planet (GP) and brown dwarf (BD) embry...
Self-gravitating protostellar discs are unstable to fragmentation if the gas can cool on a time scal...
A large fraction of brown dwarfs and low-mass hydrogen-burning stars may form by gravitational fragm...
A large fraction of brown dwarfs and low-mass hydrogen-burning stars may form by gravitational fragm...
We investigate how a protoplanetary disc’s susceptibility to gravitational instabilities and fragmen...
A large fraction of brown dwarfs and low-mass hydrogen-burning stars may form by gravitational fragm...
Context. Around 30 per cent of the observed exoplanets that orbit M dwarf stars are gas giants that ...
Context. Around 30 per cent of the observed exoplanets that orbit M dwarf stars are gas giants that ...
Context. Around 30 per cent of the observed exoplanets that orbit M dwarf stars are gas giants that ...
We carry out global three-dimensional radiation hydrodynamical simulations of self-gravitating accre...
The origin of very low-mass hydrogen-burning stars, brown dwarfs (BDs), and planetary-mass objects (...
We suggest that low-mass hydrogen-burning stars like the Sun should sometimes form with massive exte...
We suggest that low-mass hydrogen-burning stars like the Sun should sometimes form with massive exte...
I have carried out three-dimensional numerical simulations of self-gravitating discs to determine un...
We suggest that low-mass hydrogen-burning stars like the Sun should sometimes form with massive exte...
Aims. We numerically studied the formation of giant planet (GP) and brown dwarf (BD) embry...