Context. Temperature is a crucial parameter in circumstellar disk evolution and planet formation because it governs the resistance of the gas to gravitational instability and sets the chemical composition of the planet-forming material. Aims. We set out to determine the gas temperature of the young disk-like structure around the Class 0 protostar IRAS 16293-2422A. Methods. We used Atacama Large Millimeter/submillimeter Array (ALMA) observations of multiple H2CS J = 7 - 6 and J = 10 - 9 lines from the Protostellar Interferometric Line Survey (PILS) to create a temperature map for the inner similar to 200 AU of the disk-like structure. This molecule is a particularly useful temperature probe because transitions between energy levels with diff...
Context. Disk temperature structure is crucial for the formation of planets. Midplane heating induce...
Context. Emission lines from protoplanetary disks originate mainly in the irradiated surface layers,...
The accurate measurement of temperature in protoplanetary disks is critical to understanding many ke...
Context. Temperature is a crucial parameter in circumstellar disk evolution and planet formation bec...
Deeply embedded protostars are actively fed from their surrounding envelopes through their protostel...
International audienceUnderstanding the temperature structure of protoplanetary disks is key to inte...
Understanding the temperature structure of protoplanetary disks is key to interpreting observations,...
Understanding the temperature structure of protoplanetary disks is key to interpreting observations,...
Context. Protoplanetary disks have been studied extensively, both physically and chemically, to unde...
We present high-resolution 12CO and 13CO 2-1 ALMA observations, as well as optical and near-infrared...
Deeply embedded protostars are actively fed from their surrounding envelopes through their protostel...
Context. Most disks observed at high angular resolution show signs of substructures, such as rings, ...
Context. Disk temperature structure is crucial for the formation of planets. Midplane heating induce...
Context. Emission lines from protoplanetary disks originate mainly in the irradiated surface layers,...
The accurate measurement of temperature in protoplanetary disks is critical to understanding many ke...
Context. Temperature is a crucial parameter in circumstellar disk evolution and planet formation bec...
Deeply embedded protostars are actively fed from their surrounding envelopes through their protostel...
International audienceUnderstanding the temperature structure of protoplanetary disks is key to inte...
Understanding the temperature structure of protoplanetary disks is key to interpreting observations,...
Understanding the temperature structure of protoplanetary disks is key to interpreting observations,...
Context. Protoplanetary disks have been studied extensively, both physically and chemically, to unde...
We present high-resolution 12CO and 13CO 2-1 ALMA observations, as well as optical and near-infrared...
Deeply embedded protostars are actively fed from their surrounding envelopes through their protostel...
Context. Most disks observed at high angular resolution show signs of substructures, such as rings, ...
Context. Disk temperature structure is crucial for the formation of planets. Midplane heating induce...
Context. Emission lines from protoplanetary disks originate mainly in the irradiated surface layers,...
The accurate measurement of temperature in protoplanetary disks is critical to understanding many ke...