Xilong Zhou
Papers
1
Total Citations
13
H-Index
1
About
Xilong Zhou is pioneering the frontier of bio-inspired optoelectronics, with a core focus on reconfigurable phototransistors and artificial visual systems. His most celebrated contribution is the development of a graded adaptive asymmetry-Schottky-barrier phototransistor, which emulates the human eye’s remarkable ability to perceive, memorize, and adapt to visual stimuli. This device achieves an extraordinary energy record at the zeptojoule (zJ) level—a staggering leap in efficiency for neuromorphic hardware. By integrating visual perception and memory into a single, low-power component, Zhou’s work directly addresses the critical challenge of information redundancy in complex environments, offering a path toward highly responsive and energy-sustainable bionic vision. His 2025 paper, already garnering 13 citations, signals strong early impact in this rapidly evolving field. Zhou’s research not only advances fundamental understanding of Schottky barrier engineering but also holds transformative potential for next-generation artificial retinas, edge computing, and autonomous systems that demand ultra-low-power, adaptive sensing.
Research Focus
Key Achievements
Top Papers
- 1