We suggest that a high proportion of brown dwarfs are formed by gravitational fragmentation of massive extended discs around Sun-like stars. Such discs should arise frequently, but should be observed infrequently, precisely because they fragment rapidly. By performing an ensemble of radiation-hydrodynamic simulations, we show that such discs fragment within a few thousand years, and produce mainlybrown dwarf (BDs) stars, but also planetary mass (PM) stars and very low-mass hydrogen-burning (HB) stars. Most of the the PM stars and BDs are ejected by mutual interactions. We analyse the statistical properties of these stars, and compare them with observations. After a few hundred thousand years the Sun-like primary is typically left with a clo...
We suggest that low-mass hydrogen-burning stars like the Sun should sometimes form with massive exte...
We suggest that a high proportion of brown dwarfs are formed by gravitational fragmentation of massi...
We suggest that low-mass hydrogen-burning stars like the Sun should sometimes form with massive exte...
We suggest that a high proportion of brown dwarf (BD) stars are formed by gravitational fragmentatio...
We suggest that a high proportion of brown dwarf (BD) stars are formed by gravitational fragmentatio...
We suggest that a high proportion of brown dwarf (BD) stars are formed by gravitational fragmentatio...
A large fraction of the observed brown dwarfs may form by gravitational fragmentation of unstable di...
A large fraction of the observed brown dwarfs may form by gravitational fragmentation of unstable di...
A large fraction of brown dwarfs and low-mass stars may form by gravitational fragmentation of relat...
A large fraction of the observed brown dwarfs may form by gravitational fragmentation of unstable di...
A large fraction of brown dwarfs and low-mass stars may form by gravitational fragmentation of relat...
A large fraction of brown dwarfs and low-mass stars may form by gravitational fragmentation of relat...
A large fraction of brown dwarfs and low-mass stars may form by gravitational fragmentation of relat...
A large fraction of the observed brown dwarfs may form by gravitational fragmentation of unstable di...
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...
We suggest that a high proportion of brown dwarfs are formed by gravitational fragmentation of massi...
We suggest that low-mass hydrogen-burning stars like the Sun should sometimes form with massive exte...
We suggest that a high proportion of brown dwarf (BD) stars are formed by gravitational fragmentatio...
We suggest that a high proportion of brown dwarf (BD) stars are formed by gravitational fragmentatio...
We suggest that a high proportion of brown dwarf (BD) stars are formed by gravitational fragmentatio...
A large fraction of the observed brown dwarfs may form by gravitational fragmentation of unstable di...
A large fraction of the observed brown dwarfs may form by gravitational fragmentation of unstable di...
A large fraction of brown dwarfs and low-mass stars may form by gravitational fragmentation of relat...
A large fraction of the observed brown dwarfs may form by gravitational fragmentation of unstable di...
A large fraction of brown dwarfs and low-mass stars may form by gravitational fragmentation of relat...
A large fraction of brown dwarfs and low-mass stars may form by gravitational fragmentation of relat...
A large fraction of brown dwarfs and low-mass stars may form by gravitational fragmentation of relat...
A large fraction of the observed brown dwarfs may form by gravitational fragmentation of unstable di...
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...
We suggest that a high proportion of brown dwarfs are formed by gravitational fragmentation of massi...
We suggest that low-mass hydrogen-burning stars like the Sun should sometimes form with massive exte...