To investigate material transport in scrape-off layer plasma and in/out asymmetries in divertor, 13CH4 was puffed at the end of 2002/2003 experimental campaign into ASDEX Upgrade from the outer mid-plane. Ex-situ analyses of the tiles were performed by secondary ion mass spectrometry and Rutherford backscattering spectrometry. The highest amount of 13C was detected at the top of inner divertor, and below the inner and outer strike points towards the roof baffle. The 13C peaks below the strike points correlate with thick long term deposition layers detected in ion beam analysis experiments
Carbon transport and migration were studied experimentally and numerically in a high-density, low-co...
Migration of 13C has been investigated at JET by puffing 13CH4 into the outer midplane at the end of...
Carbon impurity transport and deposition were investigated in the Wendelstein 7-X stellarator by inj...
To investigate material transport in scrape-off layer plasma and long term deposition in divertor, 1...
Abstract. The migration of carbon in low-density, low-confinement plasmas of ASDEX Upgrade was studi...
To investigate the combined effect of re-deposition, re-erosion and local transport, known quantitie...
To investigate the combined effect of re-deposition, re-erosion and local transport, known quantitie...
Migration of 13C has been investigated at JET by injecting 13C-labelled methane at the outer diverto...
We have studied the migration of 13C in ASDEX Upgrade after a global impurity injection experiment i...
Migration and deposition of 13C have been investigated at JET by injecting 13C-labelled methane at t...
Abstract Carbon erosion and deposition in the ASDEX Upgrade divertor was investigated using a poloid...
During the campaign 2002–2003 a carbon erosion and deposition experiment was performed in the lower ...
Deposition in JET divertor tiles has been observed to be asymmetric; i.e. heavy deposition occurs in...
Carbon deposition and erosion were measured on ASDEX Upgrade divertor tiles and below the roof baffl...
The key problem for the use of carbon in a future fusion device is the formation of tritium containi...
Carbon transport and migration were studied experimentally and numerically in a high-density, low-co...
Migration of 13C has been investigated at JET by puffing 13CH4 into the outer midplane at the end of...
Carbon impurity transport and deposition were investigated in the Wendelstein 7-X stellarator by inj...
To investigate material transport in scrape-off layer plasma and long term deposition in divertor, 1...
Abstract. The migration of carbon in low-density, low-confinement plasmas of ASDEX Upgrade was studi...
To investigate the combined effect of re-deposition, re-erosion and local transport, known quantitie...
To investigate the combined effect of re-deposition, re-erosion and local transport, known quantitie...
Migration of 13C has been investigated at JET by injecting 13C-labelled methane at the outer diverto...
We have studied the migration of 13C in ASDEX Upgrade after a global impurity injection experiment i...
Migration and deposition of 13C have been investigated at JET by injecting 13C-labelled methane at t...
Abstract Carbon erosion and deposition in the ASDEX Upgrade divertor was investigated using a poloid...
During the campaign 2002–2003 a carbon erosion and deposition experiment was performed in the lower ...
Deposition in JET divertor tiles has been observed to be asymmetric; i.e. heavy deposition occurs in...
Carbon deposition and erosion were measured on ASDEX Upgrade divertor tiles and below the roof baffl...
The key problem for the use of carbon in a future fusion device is the formation of tritium containi...
Carbon transport and migration were studied experimentally and numerically in a high-density, low-co...
Migration of 13C has been investigated at JET by puffing 13CH4 into the outer midplane at the end of...
Carbon impurity transport and deposition were investigated in the Wendelstein 7-X stellarator by inj...