Context. Circumstellar debris disks are important because of their connection and interaction with planetary systems. An efficient way to identify these systems is through their infrared excess. Most studies so far concentrated on early-type or solar-type stars, but less effort has gone into investigating M-dwarfs, which pose the additional problem that their mid-infrared colors are poorly known. Aims. We characterize the infrared photometric behavior of M-dwarfs and search for infrared excess in nearby M-dwarfs taken from the volume-limited RECONS sample, concentrating on mid-infrared wavelengths corresponding to warm (≳100 K) dust. We then check whether the popu...
Infrared excesses around white dwarf stars indicate the presence of various astrophysical objects of...
Context: Previous observations with the Infrared Astronomical Satellite and the Infrared Space Obser...
We present the final results from a targeted search for brown dwarfs with unusual near-infrared colo...
We present 11.7 m observations of nine late-type dwarfs obtained at the Keck I 10 m telescope in 200...
We present a search for debris discs amongst M-dwarf members of nearby, young (5–150 Myr) moving gro...
NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in ...
Aims. Studies of the debris disk phenomenon have shown that most systems are analogous to the Edgewo...
Aims. Studies of the debris disk phenomenon have shown that most systems are analogous to the Edgew...
White dwarfs whose atmospheres are polluted by terrestrial-like planetary debris have become a power...
Abstract. Although 70 % of the stars in the Galaxy are M-dwarfs, thermal emission searches for cold ...
International audienceAlthough 70% of the stars in the Galaxy are M-dwarfs, thermal emission searche...
International audienceAlthough 70% of the stars in the Galaxy are M-dwarfs, thermal emission searche...
International audienceAlthough 70% of the stars in the Galaxy are M-dwarfs, thermal emission searche...
International audienceAlthough 70% of the stars in the Galaxy are M-dwarfs, thermal emission searche...
Although 70% of the stars in the Galaxy are M-dwarfs, thermal emission searches for cold debris disk...
Infrared excesses around white dwarf stars indicate the presence of various astrophysical objects of...
Context: Previous observations with the Infrared Astronomical Satellite and the Infrared Space Obser...
We present the final results from a targeted search for brown dwarfs with unusual near-infrared colo...
We present 11.7 m observations of nine late-type dwarfs obtained at the Keck I 10 m telescope in 200...
We present a search for debris discs amongst M-dwarf members of nearby, young (5–150 Myr) moving gro...
NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in ...
Aims. Studies of the debris disk phenomenon have shown that most systems are analogous to the Edgewo...
Aims. Studies of the debris disk phenomenon have shown that most systems are analogous to the Edgew...
White dwarfs whose atmospheres are polluted by terrestrial-like planetary debris have become a power...
Abstract. Although 70 % of the stars in the Galaxy are M-dwarfs, thermal emission searches for cold ...
International audienceAlthough 70% of the stars in the Galaxy are M-dwarfs, thermal emission searche...
International audienceAlthough 70% of the stars in the Galaxy are M-dwarfs, thermal emission searche...
International audienceAlthough 70% of the stars in the Galaxy are M-dwarfs, thermal emission searche...
International audienceAlthough 70% of the stars in the Galaxy are M-dwarfs, thermal emission searche...
Although 70% of the stars in the Galaxy are M-dwarfs, thermal emission searches for cold debris disk...
Infrared excesses around white dwarf stars indicate the presence of various astrophysical objects of...
Context: Previous observations with the Infrared Astronomical Satellite and the Infrared Space Obser...
We present the final results from a targeted search for brown dwarfs with unusual near-infrared colo...