Sulphur-bearing volatiles are observed to be significantly depleted in interstellar and circumstellar regions. This missing sulphur is postulated to be mostly locked up in refractory form. With ALMA we have detected sulphur monoxide (SO), a known shock tracer, in the HD 100546 protoplanetary disk. Two rotational transitions: J = 77–66 (301.286 GHz) and J = 78–67 (304.078 GHz) are detected in their respective integrated intensity maps. The stacking of these transitions results in a clear 5σ detection in the stacked line profile. The emission is compact but is spectrally resolved and the line profile has two components. One component peaks at the source velocity and the other is blue-shifted by 5 km s−1. The kinematics and spatial distributio...
Context. Simple molecules such as H2CO and CH3OH in protoplanetary disks are the starting point for ...
One of the current major challenges in star- and planet-formation is to constrain the chemical compo...
Observations of different molecular lines in protoplanetary disks provide valuable information on th...
Sulphur-bearing volatiles are observed to be significantly depleted in interstellar and circumstella...
Sulphur-bearing volatiles are observed to be significantly depleted in interstellar and circumstella...
Molecular line observations are powerful tracers of the physical and chemical conditions across the ...
Gas-phase sulphur-bearing volatiles appear to be severely depleted in protoplanetary disks. The dete...
Gas-phase sulphur-bearing volatiles appear to be severely depleted in protoplanetary disks. The dete...
Context. As material from an infalling protostellar envelope hits the forming disk, an accretion sho...
New planetary systems are made from dust and gas in the rotating disks around young stars. High-reso...
Context. The final outcome and chemical composition of a planetary system depend on its formation hi...
International audienceContext. As material from an infalling protostellar envelope hits the forming ...
Context. Several sulfur-bearing molecules are observed in the interstellar medium and in comets, in ...
Context. The investigation of the disk formation and jet launching mechanism in protostars is crucia...
Context. Simple molecules such as H2CO and CH3OH in protoplanetary disks are the starting point for ...
One of the current major challenges in star- and planet-formation is to constrain the chemical compo...
Observations of different molecular lines in protoplanetary disks provide valuable information on th...
Sulphur-bearing volatiles are observed to be significantly depleted in interstellar and circumstella...
Sulphur-bearing volatiles are observed to be significantly depleted in interstellar and circumstella...
Molecular line observations are powerful tracers of the physical and chemical conditions across the ...
Gas-phase sulphur-bearing volatiles appear to be severely depleted in protoplanetary disks. The dete...
Gas-phase sulphur-bearing volatiles appear to be severely depleted in protoplanetary disks. The dete...
Context. As material from an infalling protostellar envelope hits the forming disk, an accretion sho...
New planetary systems are made from dust and gas in the rotating disks around young stars. High-reso...
Context. The final outcome and chemical composition of a planetary system depend on its formation hi...
International audienceContext. As material from an infalling protostellar envelope hits the forming ...
Context. Several sulfur-bearing molecules are observed in the interstellar medium and in comets, in ...
Context. The investigation of the disk formation and jet launching mechanism in protostars is crucia...
Context. Simple molecules such as H2CO and CH3OH in protoplanetary disks are the starting point for ...
One of the current major challenges in star- and planet-formation is to constrain the chemical compo...
Observations of different molecular lines in protoplanetary disks provide valuable information on th...