Area of research
Electrical and Electronic Engineering · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Semiconductor Quantum Structures and Devices, Semiconductor Lasers and Optical Devices, Photonic and Optical Devices, and Advanced Semiconductor Detectors and Materials.
Extremely low excess noise and high sensitivity AlAs0.56Sb0.44 avalanche photodiodes
Room-Temperature Midwavelength Infrared InAsSb Nanowire Photodetector Arrays with Al<sub>2</sub>O<sub>3</sub> Passivation
InGaAs–GaAs Nanowire Avalanche Photodiodes Toward Single-Photon Detection in Free-Running Mode
Demonstration of large ionization coefficient ratio in AlAs0.56Sb0.44 lattice matched to InP
Carrier dynamics in hybrid nanostructure with electronic coupling from an InGaAs quantum well to InAs quantum dots
Monolithic InGaAs Nanowire Array Lasers on Silicon-on-Insulator Operating at Room Temperature
Telecom-Wavelength Bottom-up Nanobeam Lasers on Silicon-on-Insulator
Photoluminescence Study of the Interface Fluctuation Effect for InGaAs/InAlAs/InP Single Quantum Well with Different Thickness
Monolithically Integrated InGaAs Nanowires on 3D Structured Silicon-on-Insulator as a New Platform for Full Optical Links
GaAs nanopillar-array solar cells employing in situ surface passivation
Direct-Bandgap Epitaxial Core–Multishell Nanopillar Photovoltaics Featuring Subwavelength Optical Concentrators
Strongly coupled slow-light polaritons in one-dimensional disordered localized states
Hybrid quantum dot-nanowire heterostructures for deterministic biphoton quantum communications
Nanophotonic optical link
Collaborative Research: Highly mismatched GaSb-GaAs thin film multijunction solar cells for high efficiency
Growth and Predictive Modeling of InSb Nanopillars by Catalyst-Free Selective Area Epitaxy
EAGER: US-Ireland Femtojoule-per-bit Communications with Nanopillar Lasers on Si
Three-Dimensional Plasmonically Enhanced Nanopillar Photodetectors: An Integrative Design Approach
Atomic Modeling and Controlled Formation of III-V Nanopillars by Catalyst-Free Growth Mode
Collaborative Research: III-V Nanopillars Grown on Si Substrates
MRI: Acquisition of a Scanning Tunneling Microscope for Development and Analysis of Nanostructures
Strain-Compensating Layers in Stacked Quantum Dot Active Regions
Strain-Compensating Layers in Stacked Quantum Dot Active Regions