Stephan Sleziona
Papers
1
Total Citations
42
H-Index
1
About
Stephan Sleziona is a rising researcher in the field of advanced optoelectronic materials and neuromorphic device engineering. His work primarily focuses on the unique electronic and optical properties of two-dimensional materials, particularly black phosphorus, and their application in next-generation vision sensors. Sleziona’s major contribution is the discovery and characterization of a memory effect in black phosphorus field-effect transistors, where he demonstrated the coexistence of negative and positive photoconductivity. This breakthrough is pivotal for neuromorphic vision systems, as it mimics the human retina’s ability to process optical signals through distinct phases: alerting and protection (NPC), adaptation (PPC), and subsequent imaging. His 2024 paper on this phenomenon has already garnered 42 citations, underscoring its immediate impact. By harnessing oxygen molecule interactions, Sleziona’s work opens new avenues for creating adaptive, energy-efficient artificial vision that can replicate biological processes. His research stands at the intersection of materials science and bio-inspired computing, promising to advance both fundamental understanding and practical device applications.
Research Focus
Key Achievements
Top Papers
- 1