Extensive surveys of star-forming regions with Spitzer have revealed populations of disk-bearing young stellar objects. These have provided crucial constraints, such as the timescale of dispersal of protoplanetary disks, obtained by carefully combining infrared data with spectroscopic or X-ray data. While observations in various regions agree with the general trend of decreasing disk fraction with age, the Lupus V and VI regions appeared to have been at odds, having an extremely low disk fraction. Here we show, using the recent Gaia data release 2 (DR2), that these extremely low disk fractions are actually due to a very high contamination by background giants. Out of the 83 candidate young stellar objects (YSOs) in these clouds observed by ...
Context. Most studies of the stellar and substellar populations of star-forming regions rely on usin...
We present c2d Spitzer IRAC observations of the Lupus I, III, and IV dark clouds and discuss them in...
We present c2d Spitzer IRAC observations of the Lupus I, III, and IV dark clouds and discuss them in...
Extensive surveys of star-forming regions with Spitzer have revealed populations of disk-bearing you...
Extensive surveys of star-forming regions with Spitzer have revealed populations of disk-bearing you...
Extensive surveys of star-forming regions with Spitzer have revealed populations of disk-bearing you...
Extensive surveys of star-forming regions with Spitzer have revealed populations of disk-bearing you...
Studies of young stars and their forming environments are routinely performed at different wavelengt...
Previous star formation studies have, out of necessity, often defined a population of young stars co...
Previous star formation studies have, out of necessity, often defined a population of young stars co...
We present Gould's Belt (GB) Spitzer IRAC and MIPS observations of the Lupus V and VI clouds and dis...
Context. Many star forming regions are known to have associated dispersed populations, whose members...
Context. Lupus is recognised as one of the closest star-forming regions, but the lack of trigonometr...
We characterize twelve young stellar objects (YSOs) located in the Lupus I region, spatially overlap...
We characterize twelve young stellar objects (YSOs) located in the Lupus I region, spatially overlap...
Context. Most studies of the stellar and substellar populations of star-forming regions rely on usin...
We present c2d Spitzer IRAC observations of the Lupus I, III, and IV dark clouds and discuss them in...
We present c2d Spitzer IRAC observations of the Lupus I, III, and IV dark clouds and discuss them in...
Extensive surveys of star-forming regions with Spitzer have revealed populations of disk-bearing you...
Extensive surveys of star-forming regions with Spitzer have revealed populations of disk-bearing you...
Extensive surveys of star-forming regions with Spitzer have revealed populations of disk-bearing you...
Extensive surveys of star-forming regions with Spitzer have revealed populations of disk-bearing you...
Studies of young stars and their forming environments are routinely performed at different wavelengt...
Previous star formation studies have, out of necessity, often defined a population of young stars co...
Previous star formation studies have, out of necessity, often defined a population of young stars co...
We present Gould's Belt (GB) Spitzer IRAC and MIPS observations of the Lupus V and VI clouds and dis...
Context. Many star forming regions are known to have associated dispersed populations, whose members...
Context. Lupus is recognised as one of the closest star-forming regions, but the lack of trigonometr...
We characterize twelve young stellar objects (YSOs) located in the Lupus I region, spatially overlap...
We characterize twelve young stellar objects (YSOs) located in the Lupus I region, spatially overlap...
Context. Most studies of the stellar and substellar populations of star-forming regions rely on usin...
We present c2d Spitzer IRAC observations of the Lupus I, III, and IV dark clouds and discuss them in...
We present c2d Spitzer IRAC observations of the Lupus I, III, and IV dark clouds and discuss them in...