Radiation Resistant Silicon Semiconductor Devices-Patent
Improving radiation resistance of silicon semiconductor junctions by doping with lithium
Engineering topics
Publications and source records attributed to Wysocki, J. J..
Improving radiation resistance of silicon semiconductor junctions by doping with lithium
Lithium role in damage and recovery process of irradiated silicon solar cells, discussing recombination cross sections
Effect of lithium in producing recovery in solar cells irradiated with high energy particles
Drift fields are simply introduced into solar cells at low temperatures in short periods. This is done after their rectifying junctions and output contacts are applied.
Li behavior in self-healing radiation resistant Si solar cells
Lithium interaction with radium induced damage in silicon solar cells to produce center preserving minority carrier lifetime
Lithium use in silicon solar cell for radiation resistance improvement, noting preservation of minority carrier lifetime
Radiation damage in silicon solar cells and annealing or compensation of damage by impurities
Gallium arsenide and silicon solar cells under proton irradiation, noting decrease of short circuit current and open circuit voltage
Radiation effects on lithium-doped silicon solar cells from diffusion length degradation studies
Current and voltage behavior of silicon cells subjected to low energy proton irradiation
Observed paramagnetic center, effects of impurities on radiation damage of silicon, and low energy proton bombardment of silicon and gallium arsenide solar cells
Radiation damage centers in silicon - electron paramagnetic resonance study
Effects of nuclear radiation on gallium arsenide and silicon solar cells, noting performance difference in terms of initial lifetime and photo- absorption process
Recombination, trapping & electron spin resonance in normal and irradiated silicon