Several groups of lithium-doped solar cells have been evaluated under 1-MeV electron irradiation. Many of these groups indicated superior electrical output after irradiation and recovery as compared to similarly irradiated n/p solar cells. The superior cells are those with lithium concentrations of 2 to 5 x 10 to the 14th power atoms per cu cm at the junction. An irradiation of lithium-doped cells with 28-MeV electrons indicated a tenfold advantage of lithium-doped cells over n/p cells. Studies of the changes in the lithium concentration during recovery have shown the amounts of lithium reacting is highly nonlinear in regard to the electron fluence and varies greatly with distance from the junction. The results indicate that precipitation o...
Lithium action effects on spontaneous annealing of radiation damage in bulk silicon and silicon sola...
The results of an experimental evaluation of the real-time degradation characteristics of lithium-di...
Fabrication techniques to improve initial efficiency and radiation tolerance of radiation hardened l...
Lithium donor density gradient measurements for prediction of lithium cell behavior after electron i...
Experimental results on lithium-containing solar cells point toward the lithium donor density gradie...
Evidence has been presented that a lithium-diffused crucible-grown silicon solar cell can be made wi...
Interaction of lithium with defects induced in silicon solar cells by one MeV electron bombardmen
Effect of lithium on spontaneous annealing of radiation damage in silicon solar cell
Recovery properties of lithium containing p-n silicon solar cells after radiation damag
Effects of radiation on efficiency of lithium doped solar cells in electrical space power syste
Lithium-doped solar cells have been fabricated with initial lot efficiencies averaging 11.9 percent ...
Lithium doped p-n solar cells meet the basic requirements for space use. The efficiencies of the Lop...
Lithium doped silicon solar cells having dimensions as large as 12 sq cm are now possible, due to si...
Boron doped silicon n+p solar cells were counterdoped with lithium by ion implanation and the result...
Various spectral response studies are reported that assess lithium doping effects on the recovery pr...
Lithium action effects on spontaneous annealing of radiation damage in bulk silicon and silicon sola...
The results of an experimental evaluation of the real-time degradation characteristics of lithium-di...
Fabrication techniques to improve initial efficiency and radiation tolerance of radiation hardened l...
Lithium donor density gradient measurements for prediction of lithium cell behavior after electron i...
Experimental results on lithium-containing solar cells point toward the lithium donor density gradie...
Evidence has been presented that a lithium-diffused crucible-grown silicon solar cell can be made wi...
Interaction of lithium with defects induced in silicon solar cells by one MeV electron bombardmen
Effect of lithium on spontaneous annealing of radiation damage in silicon solar cell
Recovery properties of lithium containing p-n silicon solar cells after radiation damag
Effects of radiation on efficiency of lithium doped solar cells in electrical space power syste
Lithium-doped solar cells have been fabricated with initial lot efficiencies averaging 11.9 percent ...
Lithium doped p-n solar cells meet the basic requirements for space use. The efficiencies of the Lop...
Lithium doped silicon solar cells having dimensions as large as 12 sq cm are now possible, due to si...
Boron doped silicon n+p solar cells were counterdoped with lithium by ion implanation and the result...
Various spectral response studies are reported that assess lithium doping effects on the recovery pr...
Lithium action effects on spontaneous annealing of radiation damage in bulk silicon and silicon sola...
The results of an experimental evaluation of the real-time degradation characteristics of lithium-di...
Fabrication techniques to improve initial efficiency and radiation tolerance of radiation hardened l...