Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Computer science, Visible light communication, Light-emitting diode, Polarization (electrochemistry), Optics, and Physics.
Ultra narrowband geometric-phase resonant metasurfaces
A metasurface-based full-color circular auto-focusing Airy beam transmitter for stable high-speed underwater wireless optical communications
Electrically tunable planar liquid-crystal singlets for simultaneous spectrometry and imaging
Low-latency 100 Gb/s PAM-4 PON with a 42.5 dB power budget over the 20 km anti-resonant hollow-core fiber
A two-dimensional mid-infrared optoelectronic retina enabling simultaneous perception and encoding
Harnessing microcomb-based parallel chaos for random number generation and optical decision making
Key Technologies for High-Speed Si-Substrate LED Based Visible Light Communication
Polarization structured light 3D depth image sensor for scenes with reflective surfaces
Optimal Adaptive Waveform Design Utilizing an End-to-End Learning-Based Pre-Equalization Neural Network in an UVLC System
Si-substrate vertical-structure InGaN/GaN micro-LED-based photodetector for beyond 10 Gbps visible light communication
Phosphor-Free Golden Light LED Array for 5.4-Gbps Visible Light Communication Using MIMO Tomlinson-Harashima Precoding
3.76-Gbps yellow-light visible light communication system over 1.2 m free space transmission utilizing a Si-substrate LED and a cascaded pre-equalizer network
From Lingering to Rift: Metasurface Decoupling for Near‐ and Far‐Field Functionalization
High-speed visible light communication systems based on Si-substrate LEDs with multiple superlattice interlayers
Malus-metasurface-assisted polarization multiplexing
Full-space Cloud of Random Points with a Scrambling Metasurface