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Published on: November 9, 2015
Radiation Hardness of Silicon Carbide upon High-Temperature Electron and Proton Irradiation
Alexander A Lebedev1, Vitali V Kozlovski2, Klavdia S Davydovskaya1
1Solid State Electronic Department, Ioffe Institute, Politekhnicheskaya Street 26, 194021 St. Petersburg, Russia.
Abstract:
The radiation hardness of silicon carbide with respect to electron and proton irradiation and its dependence on the irradiation temperature are analyzed. It is shown that the main mechanism of SiC compensation is the formation of deep acceptor levels. With increasing the irradiation temperature, the probability of the formation of these centers decreases, and they are partly annealed out. As a result, the carrier removal rate in SiC becomes ~6 orders of magnitude lower in the case of irradiation at 500 °C. Once again, this proves that silicon carbide is promising as a material for high-temperature electronics devices.
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