Ouxiang Zhou
Papers
1
Total Citations
169
H-Index
1
About
Ouxiang Zhou is a leading figure in advanced optoelectronics, whose work bridges the gap between conventional photodetection and bio-inspired neuromorphic vision. His primary research focuses on developing novel semiconductor heterojunctions for dual-mode devices that can dynamically switch between high-speed photodetection and synaptic emulation. Zhou’s landmark 2023 paper, cited over 169 times, introduced a trench-bridged GaN/Ga₂O₃/GaN back-to-back double heterojunction architecture. This breakthrough solved the long-standing challenge of reconciling the speed mismatch between photodetectors and neuromorphic vision sensors, enabling a single device to perform both functions simply by modulating bias voltage. His contributions have profound implications for next-generation artificial visual systems, edge computing, and adaptive sensing. By demonstrating how material engineering and bias control can mimic biological neural responses, Zhou has opened new pathways for compact, energy-efficient vision hardware. His work is widely recognized for its elegance and practical impact, positioning him as a key innovator in the rapidly evolving field of neuromorphic optoelectronics.
Research Focus
Key Achievements
Top Papers
- 1