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◆ IEEE Transactions on Nuclear Science2026-01-01· Irradiation

Synergistic Radiation Effect of 300 MeV Proton and Heavy Ion on Electrical Characteristics of β-Ga <sub>2</sub> O <sub>3</sub> SBD

Zhengliang Zhang, Jianli Liu, Yiping Xiao, Chaoming Liu, Lei Shu, Yanqing Zhang, Chunhua Qi, Guoliang Ma, Mingxue Huo, Liyi Xiao, Tianqi Wang

原始摘要(英文原文)· Original abstract
This work investigates the synergistic radiation effects of β-Ga2O3Schottky barrier diodes (SBDs) under 300 MeV proton and 143 MeV Argon (Ar) heavy ion irradiation. Following 300 MeV proton irradiation, we observed an increase in reverse leakage current, a reduction in the Schottky barrier height, and a decrease in forward conduction current in the β-Ga2O3SBDs. The Deep Level Transient Spectroscopy (DLTS) measurements revealed the emergence of new interface traps (E2, E3) and an increase in the concentration of bulk traps (E2*) after proton irradiation, which are likely the primary contributors to the degradation of SBD performance. In subsequent heavy ion irradiation experiments, SBD previously subjected to proton irradiation experienced single-event burnout (SEB) at a bias of −100 V. At the same time, non-proton irradiated SBDs exhibited SEB at −180 V. These results indicate that cumulative radiation effects significantly enhance the probability of single event burnout, underscoring the challenges to the reliability of β- Ga2O3SBDs in space environments.
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Synergistic Radiation Effect of 300 MeV Proton and Heavy Ion on Electrical Characteristics of β-Ga <sub>2</sub> O <sub>3</sub> SBD — 科研速览 Science Skim