雪崩光电二极管
APDS
光子计数
量子效率
光电子学
暗电流
材料科学
光子
盖革计数器
光电探测器
光电二极管
物理
光学
探测器
作者
Dong Zhou,Fei Liu,Hai Lu,Dunjun Chen,Fangfang Ren,Rong Zhang,Yi Zheng
标识
DOI:10.1109/lpt.2014.2316793
摘要
In this letter, the high-temperature performance of 4H-SiC avalanche photodiodes (APDs) working in Geiger mode is studied for the first time. At unity gain bias, the maximum quantum efficiency of the APD increases from 53.4% at 290 nm to 63.3% at 295 nm as temperature rises from room temperature to 150 °C. Meanwhile, the dark current of the APD before breakdown increases by more than two to three orders of magnitude. At a fixed gain of 1.3 × 106, the single photon counting efficiency at 280 nm only slightly drops from 6.17% to 6% in the same temperature range, whereas the dark count rate increases from 22 to 80 KHz. This letter indicates that SiC APDs have the potential to work in a high-temperature harsh environment with single photon counting capability.
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