| Literature DB >> 25946467 |
Bin Zhao1,2, Fei Wang1, Hongyu Chen3, Yunpeng Wang1, Mingming Jiang1, Xiaosheng Fang3, Dongxu Zhao1.
Abstract
High-performance solar-blind (200-280 nm) avalanche photodetectors (APDs) were fabricated based on highly crystallized ZnO-Ga2O3 core-shell microwires. The responsivity can reach up to 1.3 × 10(3) A/W under -6 V bias. Moreover, the corresponding detectivity was as high as 9.91 × 10(14) cm·Hz(1/2)/W. The device also showed a fast response, with a rise time shorter than 20 μs and a decay time of 42 μs. The quality of the detectors in solar-blind waveband is comparable to or even higher than that of commercial Si APD (APD120A2 from Thorlabs Inc.), with a responsivity ∼8 A/W, detectivity ∼10(12) cm·Hz(1/2)/W, and response time ∼20 ns. The high performance of this APD make it highly suitable for practical applications as solar-blind photodetectors, and this core-shell microstructure heterojunction design method would provide a new approach for realizing an APD device.Entities:
Keywords: avalanche photodectors; core−shell microwires; solar-blind photodetectors
Year: 2015 PMID: 25946467 DOI: 10.1021/acs.nanolett.5b00906
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189