Context.The principal mechanism by which brown dwarfs form, and its relation to the formation of higher-mass (i.e. hydrogen-burning) stars, is poorly understood. Aims.We advocate a new model for the formation of brown dwarfs. Methods.In this model, brown dwarfs are initially binary companions, formed by gravitational fragmentation of the outer parts ($R\ga 100\,{\rm AU}$) of protostellar discs around low-mass hydrogen-burning stars. Most of these binaries are then gently disrupted by passing stars to create a largely single population of brown dwarfs and low-mass hydrogen-burning stars. Results.This idea is consistent with the excess of binaries found in low-density pre-main sequence populations, like that in Taurus,...
We review five mechanisms for forming brown dwarfs: (1) turbulent fragmentation of molecular clouds,...
We review five mechanisms for forming brown dwarfs: (1) turbulent fragmentation of molecular clouds,...
We suggest that low-mass hydrogen-burning stars like the Sun should sometimes form with massive exte...
Context.The principal mechanism by which brown dwarfs form, and its relation to the formation of hig...
Context.The principal mechanism by which brown dwarfs form, and its relation to the formation of hig...
Context. The principal mechanism by which brown dwarfs form, and its relation to the formation of hi...
Context.The principal mechanism by which brown dwarfs form, and its relation to the formation of hig...
Context.The principal mechanism by which brown dwarfs form, and its relation to the formation of hig...
Context.The principal mechanism by which brown dwarfs form, and its relation to the formation of hig...
Context.The principal mechanism by which brown dwarfs form, and its relation to the formation of hig...
Context: The principal mechanism by which brown dwarfs form, and its relation to the formation of hi...
We present results from the first hydrodynamical star formation calculation to demonstrate that brow...
We present results from the first hydrodynamical star formation calculation to demonstrate that brow...
We review five mechanisms for forming brown dwarfs: (1) turbulent fragmentation of molecular clouds,...
We present results from the first hydrodynamical star formation calculation to demonstrate that brow...
We review five mechanisms for forming brown dwarfs: (1) turbulent fragmentation of molecular clouds,...
We review five mechanisms for forming brown dwarfs: (1) turbulent fragmentation of molecular clouds,...
We suggest that low-mass hydrogen-burning stars like the Sun should sometimes form with massive exte...
Context.The principal mechanism by which brown dwarfs form, and its relation to the formation of hig...
Context.The principal mechanism by which brown dwarfs form, and its relation to the formation of hig...
Context. The principal mechanism by which brown dwarfs form, and its relation to the formation of hi...
Context.The principal mechanism by which brown dwarfs form, and its relation to the formation of hig...
Context.The principal mechanism by which brown dwarfs form, and its relation to the formation of hig...
Context.The principal mechanism by which brown dwarfs form, and its relation to the formation of hig...
Context.The principal mechanism by which brown dwarfs form, and its relation to the formation of hig...
Context: The principal mechanism by which brown dwarfs form, and its relation to the formation of hi...
We present results from the first hydrodynamical star formation calculation to demonstrate that brow...
We present results from the first hydrodynamical star formation calculation to demonstrate that brow...
We review five mechanisms for forming brown dwarfs: (1) turbulent fragmentation of molecular clouds,...
We present results from the first hydrodynamical star formation calculation to demonstrate that brow...
We review five mechanisms for forming brown dwarfs: (1) turbulent fragmentation of molecular clouds,...
We review five mechanisms for forming brown dwarfs: (1) turbulent fragmentation of molecular clouds,...
We suggest that low-mass hydrogen-burning stars like the Sun should sometimes form with massive exte...