Determining the mechanisms that drive the evolution of protoplanetary disks is a necessary step toward understanding how planets form. For this work, we measured the mass accretion rate for young stellar objects with disks at age > 5 Myr, a critical test for the current models of disk evolution. We present the analysis of the spectra of 36 targets in the similar to 5-10 Myr old Upper Scorpius star-forming region for which disk masses were measured with ALMA. We find that the mass accretion rates in this sample of old but still surviving disks are similarly high as those of the younger (similar to 1-3 Myr old) star-forming regions of Lupus and Chamaeleon I, when considering the dependence on stellar and disk mass. In particular, several disk...
International audienceContext. Characterizing the evolution of protoplanetary disks is necessary to ...
Context. Characterizing the evolution of protoplanetary disks is necessary to improve our understand...
Aims. We study the dependence of protoplanetary disk evolution on stellar mass using a large sample ...
Determining the mechanisms that drive the evolution of protoplanetary disks is a necessary step towa...
Determining the mechanisms that drive the evolution of protoplanetary disks is a necessary step towa...
Funding: CFM acknowledges an ESO fellowship. This project has received funding from the European Uni...
Determining the mechanisms that drive the evolution of protoplanetary disks is a necessary step towa...
Low-mass pre-main-sequence stars interact with their surrounding protoplanetary disks through accret...
A relation between the mass accretion rate onto the central young star and the mass of the surroundi...
Context. Planets form during the first few Myr of the evolution of the star-disk system, possibly be...
The dependence of the mass accretion rate on the stellar properties is a key constraint for star for...
The dependence of the mass accretion rate on the stellar properties is a key constraint for star for...
International audienceContext. Characterizing the evolution of protoplanetary disks is necessary to ...
International audienceContext. Characterizing the evolution of protoplanetary disks is necessary to ...
Context. Characterizing the evolution of protoplanetary disks is necessary to improve our understand...
International audienceContext. Characterizing the evolution of protoplanetary disks is necessary to ...
Context. Characterizing the evolution of protoplanetary disks is necessary to improve our understand...
Aims. We study the dependence of protoplanetary disk evolution on stellar mass using a large sample ...
Determining the mechanisms that drive the evolution of protoplanetary disks is a necessary step towa...
Determining the mechanisms that drive the evolution of protoplanetary disks is a necessary step towa...
Funding: CFM acknowledges an ESO fellowship. This project has received funding from the European Uni...
Determining the mechanisms that drive the evolution of protoplanetary disks is a necessary step towa...
Low-mass pre-main-sequence stars interact with their surrounding protoplanetary disks through accret...
A relation between the mass accretion rate onto the central young star and the mass of the surroundi...
Context. Planets form during the first few Myr of the evolution of the star-disk system, possibly be...
The dependence of the mass accretion rate on the stellar properties is a key constraint for star for...
The dependence of the mass accretion rate on the stellar properties is a key constraint for star for...
International audienceContext. Characterizing the evolution of protoplanetary disks is necessary to ...
International audienceContext. Characterizing the evolution of protoplanetary disks is necessary to ...
Context. Characterizing the evolution of protoplanetary disks is necessary to improve our understand...
International audienceContext. Characterizing the evolution of protoplanetary disks is necessary to ...
Context. Characterizing the evolution of protoplanetary disks is necessary to improve our understand...
Aims. We study the dependence of protoplanetary disk evolution on stellar mass using a large sample ...