The performance of a newly developed Silicon Strip Detector (SSD, by Tan Jilian's Group) has been tested. The active area of the SSD is 48mm×20 nan and the thickness of the silicon wafer is 300μm. The front ...The performance of a newly developed Silicon Strip Detector (SSD, by Tan Jilian's Group) has been tested. The active area of the SSD is 48mm×20 nan and the thickness of the silicon wafer is 300μm. The front surface is divided into 16 equally distributed strips with 3 mm in width and 20 mm in length for each. The gap betweentwo strips is 140μm. The back surface is unstripped. The thickness of the front window is designed to be 0.1μm, and the back window is 0.5μm.展开更多
Extended algorithm has been developed for ablation rate calculations of Li, Be, B impurity pellets and five combinations of solid isotopic hydrogenic H2, HD, D2, DT, T2 pellets. Numerical calculations have been perfor...Extended algorithm has been developed for ablation rate calculations of Li, Be, B impurity pellets and five combinations of solid isotopic hydrogenic H2, HD, D2, DT, T2 pellets. Numerical calculations have been performed for reactor relevant plasma.展开更多
文摘The performance of a newly developed Silicon Strip Detector (SSD, by Tan Jilian's Group) has been tested. The active area of the SSD is 48mm×20 nan and the thickness of the silicon wafer is 300μm. The front surface is divided into 16 equally distributed strips with 3 mm in width and 20 mm in length for each. The gap betweentwo strips is 140μm. The back surface is unstripped. The thickness of the front window is designed to be 0.1μm, and the back window is 0.5μm.
文摘Extended algorithm has been developed for ablation rate calculations of Li, Be, B impurity pellets and five combinations of solid isotopic hydrogenic H2, HD, D2, DT, T2 pellets. Numerical calculations have been performed for reactor relevant plasma.