APDS
光电探测器
光电子学
响应度
异质结
材料科学
雪崩光电二极管
半导体
暗电流
带隙
光学
探测器
物理
作者
Yuehui Wang,Haoran Li,Jia Jia Cao,Jiaying Shen,Qingyi Zhang,Yongtao Yang,Zhengang Dong,Tianhong Zhou,Yang Zhang,Weihua Tang,Zhenping Wu
出处
期刊:ACS Nano
[American Chemical Society]
日期:2021-10-04
卷期号:15 (10): 16654-16663
被引量:91
标识
DOI:10.1021/acsnano.1c06567
摘要
Solar blind photodetectors with a cutoff wavelength within the 200-280 nm region is attracting much attention due to their potential civilian and military applications. The avalanche photodetectors (APDs) formed based on wide-bandgap semiconductor Ga2O3 are expected to meet emerging technological demands. These devices, however, suffer from limitations associated with the quality of as-grown Ga2O3 or the difficulty in alleviating the defects and dislocations. Herein, high-performance APDs incorporating amorphous Ga2O3 (a-Ga2O3)/ITO heterojunction as the central element have been reliably fabricated at room temperature. The a-Ga2O3-based APDs exhibits an ultrahigh responsivity of 5.9 × 104 A/W, specific detectivity of 1.8 × 1014 Jones, and an external quantum efficiency up to 2.9 × 107% under 254 nm light irradiation at 40 V reverse bias. Notably, the gain could reach 6.8 × 104, indicating the outstanding capability for ultraweak signals detection. The comprehensive superior capabilities of the a-Ga2O3-based APDs can be ascribed to the intrinsic carrier transport manners in a-Ga2O3 as well as the modified band alignment at the heterojunctions. The trade-off between low processing temperature and superior characteristics of a-Ga2O3 promises greater design freedom for realization of wide applications of emerging semiconductor Ga2O3 with even better performance since relieving the burden on the integration progress.
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