Area of research
Electrical and Electronic Engineering · Condensed Matter Physics
Research interest
Research interests include Visible light communication, Computer science, Optoelectronics, Materials science, Light-emitting diode, and Transmission (telecommunications).
Edge-guided inverse design of digital metamaterial-based mode multiplexers for high-capacity multi-dimensional optical interconnect
Beyond 600 Gbps optical interconnect utilizing wavelength division multiplexed visible light laser communication [Invited]
III‐Nitride Micro‐Array Integration for Photon Transceiver
Integrated machine learning and causal inference reveal CHRDL1 as a diagnostic and functional biomarker in NSCLC
A three-terminal light emitting and detecting diode
A metasurface-based full-color circular auto-focusing Airy beam transmitter for stable high-speed underwater wireless optical communications
Dual‐Functional Triangular‐Shape Micro‐Size Light‐Emitting and Detecting Diode for On‐Chip Optical Communication in the Deep Ultraviolet Band
Flexible 2 × 2 multiple access visible light communication system based on an integrated parallel GaN/InGaN micro-photodetector array module
Self-supervised dynamic learning for long-term high-fidelity image transmission through unstabilized diffusive media
Miniaturized AlGaN‐Based Deep‐Ultraviolet Light‐Emitting and Detecting Diode with Superior Light‐Responsive Characteristics
Graphene Readout Silicon‐Based Microtube Photodetectors for Encrypted Visible Light Communication
Enabling Technologies to Achieve Beyond 500 Gbps Optical Intra-Connects Based on WDM Visible Light Laser Communication
Low-cost, large-coverage, and high-flexibility coherent PON for next-generation access networks: advances, challenges, and prospects [Invited]
Inverse Design of a Wavelength (De)Multiplexer for 1.55- and 2-μm Wavebands by Using a Hybrid Analog-Digital Method
A Novel Hybrid Detection Scheme for Visible Light Broadcast Communication and Dedicated Communication Based on a GaN Detector Array
Key Technologies for High-Speed Si-Substrate LED Based Visible Light Communication
Waveform-to-Waveform End-to-End Learning Framework in a Seamless Fiber-Terahertz Integrated Communication System
31.38 Gb/s GaN-based LED array visible light communication system enhanced with V-pit and sidewall quantum well structure
15.26Gb/s Si-substrate GaN high-speed visible light photodetector with super-lattice structure
Simplified Neural Network With Physics-Informed Module in MIMO Visible Light Communication Systems
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
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
Improved electro-optical and photoelectric performance of GaN-based micro-LEDs with an atomic layer deposited AlN passivation layer
High-speed visible light communication systems based on Si-substrate LEDs with multiple superlattice interlayers
Group-III-Nitride Superluminescent Diodes for Solid-State Lighting and High-Speed Visible Light Communications