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Eighteen mega-electron-volt alpha-particle damage in homoepitaxial beta-Ga2O3 Schottky rectifiers

Authors
Yang, JianchengFares, ChakerGuan, YuRen, F.Pearton, S. J.Bae, JinhoKim, JihyunKuramata, Akito
Issue Date
5월-2018
Publisher
A V S AMER INST PHYSICS
Citation
JOURNAL OF VACUUM SCIENCE & TECHNOLOGY B, v.36, no.3
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF VACUUM SCIENCE & TECHNOLOGY B
Volume
36
Number
3
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/76026
DOI
10.1116/1.5027613
ISSN
1071-1023
Abstract
Homoepitaxial Ga2O3 rectifiers with vertical geometry were subject to 18 MeV alpha particle irradiation at fluences of 10(12)-10(13) cm(-2), simulating space radiation exposure. The range of these particles (similar to 80 mu m) is much greater than the drift layer thickness in the structures (similar to 7 mu m). The carrier removal rates were in the range of 406-728 cm(-1) for these conditions. These values are factors of 2-3 higher than for high energy (10 MeV) protons and 2 orders of magnitude higher than for 1.5 MeV electron irradiation of the same material. The on-state resistance of the rectifiers is more degraded by alpha particle irradiation than either ideality factor or barrier height. The reverse breakdown voltage of the rectifiers increases with alpha particle dose as carriers in the drift region are removed by trapping into traps created by the radiation damage. The on/off ratio of the rectifiers was severely degraded by alpha particle-induced damage, but the reverse recovery characteristics were unaffected even by the highest dose, with values around similar to 20 ns. Published by the AVS.
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