Publication | Closed Access
Energy dependence of electron damage and displacement threshold energy in 6H silicon carbide
127
Citations
11
References
1991
Year
EngineeringRadiation Materials ScienceSemiconductor DeviceDisplacement DamagePower SemiconductorsElectron DamageMaterials EngineeringSemiconductor TechnologyElectrical EngineeringEnergetic ElectronsSingle Event EffectsSemiconductor Device FabricationMinimum Electron EnergyMicroelectronicsApplied PhysicsEnergy DependenceDisplacement Threshold EnergyOptoelectronicsCarbide
The frequency response of silicon carbide (SiC) light-emitting diodes has been used to measure the energy dependence of displacement damage produced in 6H SiC by energetic electrons. The minimum electron energy required to produce displacement damage was determined to be 108+or-7 keV, corresponding to an atomic displacement of silicon atoms. For electrons of energies greater than 0.5 MeV, the damage constant for lifetime degradation in SiC is lower than that for GaAs by more than three orders of magnitude, indicating a greatly superior resistance of SiC to displacement damage in most radiation environments.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
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