Dust formation in turbulent media is studied adopting the example of brown dwarf atmospheres. By combining asymptotic techniques and time-dependent, multi-dimensional numerical simulations, we show that acoustic waves originating from convective motions provide a mechanism to initiate dust nucleation in otherwise dust-hostile environments. The subsequently growing particles cause a radiative cooling strong enough to re-initiate efficient dust formation resulting in a strongly inhomogeneous distribution of dust in such environments. Recent observations bear indications for such cloudy dust distributions in brown dwarf atmospheres
Aims. Brown dwarfs are covered by dust cloud layers which cause inhomogeneous surface features and ...
Context.Dust clouds influence the atmospheric structure of brown dwarfs, and they affect the heat tr...
Context. Dust clouds influence the atmospheric structure of brown dwarfs, and they affect the heat t...
Dust formation in turbulent media is studied adopting the example of brown dwarf atmospheres. By com...
Dust formation in brown dwarf atmospheres is studied by utilising a model for driven turbulence in ...
Dust formation in brown dwarf atmospheres is studied by utilising a model for driven turbulence in t...
Dust formation in brown dwarf atmospheres is studied by utilising a model for driven turbulence in t...
Context. Observationally, spectra of brown dwarfs indicate the presence of dust in their atmospheres...
International audienceContext. Observationally, spectra of brown dwarfs indicate the presence of dus...
The large scale structure of a brown dwarf atmosphere is determined by an interplay of convection, r...
International audienceThe influence of dust grains on the atmospheres of brown dwarfs is visible in ...
In this paper, we quantify and discuss the physical and surface chemical processes leading to the fo...
In this paper, first solutions of the dust moment equations developed in (Woitke & Helling 2003)...
Brown dwarf atmospheres are largely convective. These convective gas flows collide and feed back a w...
Aims. Brown dwarfs are covered by dust cloud layers which cause inhomogeneous surface features and ...
Context.Dust clouds influence the atmospheric structure of brown dwarfs, and they affect the heat tr...
Context. Dust clouds influence the atmospheric structure of brown dwarfs, and they affect the heat t...
Dust formation in turbulent media is studied adopting the example of brown dwarf atmospheres. By com...
Dust formation in brown dwarf atmospheres is studied by utilising a model for driven turbulence in ...
Dust formation in brown dwarf atmospheres is studied by utilising a model for driven turbulence in t...
Dust formation in brown dwarf atmospheres is studied by utilising a model for driven turbulence in t...
Context. Observationally, spectra of brown dwarfs indicate the presence of dust in their atmospheres...
International audienceContext. Observationally, spectra of brown dwarfs indicate the presence of dus...
The large scale structure of a brown dwarf atmosphere is determined by an interplay of convection, r...
International audienceThe influence of dust grains on the atmospheres of brown dwarfs is visible in ...
In this paper, we quantify and discuss the physical and surface chemical processes leading to the fo...
In this paper, first solutions of the dust moment equations developed in (Woitke & Helling 2003)...
Brown dwarf atmospheres are largely convective. These convective gas flows collide and feed back a w...
Aims. Brown dwarfs are covered by dust cloud layers which cause inhomogeneous surface features and ...
Context.Dust clouds influence the atmospheric structure of brown dwarfs, and they affect the heat tr...
Context. Dust clouds influence the atmospheric structure of brown dwarfs, and they affect the heat t...