International audienceContext. The dispersal of protoplanetary disks sets the timescale that is available for planets to assemble, and thus it is one of the fundamental parameters in theories of planetary formation. Disk dispersal is determined by several properties of the central star, the disk itself, and the surrounding environment. In particular, the metallicity of disks may affect their evolution, but controversial results have been published so far: disks in low-metallicity clusters appear to disperse rapidly, while some evidence supports the existence of accreting disks that are several million years old in the Magellanic Clouds. Aims: We study the dispersal timescale of disks in Dolidze 25, the young cluster in the proximity of the...
Aims. We study the evolution of circumstellar disks in 22 young (1 to 100 Myr) nearby (within 500 pc...
The time-scale over which and modality by which young stellar objects (YSOs) disperse their circumst...
The time-scale over which and the modality by which young stellar objects (YSOs) disperse their circ...
International audienceContext. The dispersal of protoplanetary disks sets the timescale that is avai...
In order to understand protoplanetary disk evolution and planet formation in a wider range of enviro...
Protoplanetary disks dissipate rapidly after the central star forms, on time-scales comparable to th...
The lifetime of protoplanetary discs is a key parameter for planet formation theory.Observations of ...
Context. Most stars form in clusters and thus it is important to characterize the protostellar disk ...
The origin and evolution of circumstellar disks is one of the main scientific quests intimately rela...
Cluster studies reveal that signs of disk evolution (inner holes or gaps, grain growth, small-dust d...
The lifetime of protoplanetary disks is a crucial parameter for planet formation research. Observati...
Cluster studies reveal that signs of disk evolution (inner holes or gaps, grain growth, small-dust d...
The formation timescale of planetary systems is limited by the lifetime of the protoplanetary disks ...
Context. Planets form during the first few Myr of the evolution of the star-disk system, possibly be...
International audienceContext. Planets form during the first few Myr of the evolution of the star-di...
Aims. We study the evolution of circumstellar disks in 22 young (1 to 100 Myr) nearby (within 500 pc...
The time-scale over which and modality by which young stellar objects (YSOs) disperse their circumst...
The time-scale over which and the modality by which young stellar objects (YSOs) disperse their circ...
International audienceContext. The dispersal of protoplanetary disks sets the timescale that is avai...
In order to understand protoplanetary disk evolution and planet formation in a wider range of enviro...
Protoplanetary disks dissipate rapidly after the central star forms, on time-scales comparable to th...
The lifetime of protoplanetary discs is a key parameter for planet formation theory.Observations of ...
Context. Most stars form in clusters and thus it is important to characterize the protostellar disk ...
The origin and evolution of circumstellar disks is one of the main scientific quests intimately rela...
Cluster studies reveal that signs of disk evolution (inner holes or gaps, grain growth, small-dust d...
The lifetime of protoplanetary disks is a crucial parameter for planet formation research. Observati...
Cluster studies reveal that signs of disk evolution (inner holes or gaps, grain growth, small-dust d...
The formation timescale of planetary systems is limited by the lifetime of the protoplanetary disks ...
Context. Planets form during the first few Myr of the evolution of the star-disk system, possibly be...
International audienceContext. Planets form during the first few Myr of the evolution of the star-di...
Aims. We study the evolution of circumstellar disks in 22 young (1 to 100 Myr) nearby (within 500 pc...
The time-scale over which and modality by which young stellar objects (YSOs) disperse their circumst...
The time-scale over which and the modality by which young stellar objects (YSOs) disperse their circ...