Jongwan Jung
Papers
2
Total Citations
7
H-Index
2
About
Jongwan Jung is an emerging researcher at the forefront of neuromorphic computing and advanced optoelectronic materials, with a particular focus on chalcogenide-based systems for next-generation artificial intelligence hardware. His work centers on designing and characterizing two-dimensional van der Waals materials — notably monochalcogenides and compounds such as SnS₂ — to engineer brain-inspired photosynaptic devices that mimic the efficiency and adaptability of biological neural networks. Jung's most notable contributions involve developing retina-inspired photosynapses capable of simultaneously processing visual information and performing synaptic functions, a critical step toward energy-efficient neuromorphic vision systems. His combined experimental and theoretical approach, as demonstrated in his study of 2D chalcogenide-based memristors, provides deep mechanistic insight into how optical and electrical stimuli can be used to modulate synaptic behavior in these materials. This dual methodology distinguishes his research as both practically grounded and theoretically rigorous. Though early in his publication career, Jung's papers have already attracted citations in 2025, signaling growing interest from the neuromorphic and materials science communities. His research holds significant promise for advancing artificial visual systems and low-power cognitive computing architectures.
Research Focus
Key Achievements
Top Papers
- 1
- 2