Area of research
Electronic, Optical and Magnetic Materials · Biomedical Engineering
Research interest
Research interests include Metamaterials and Metasurfaces Applications, Plasmonic and Surface Plasmon Research, Advanced Antenna and Metasurface Technologies, and Photonic and Optical Devices.
Meta-optics achieves RGB-achromatic focusing for virtual reality
Coherent Raman scattering imaging with a near-infrared achromatic metalens
Flat optics with dispersion-engineered metasurfaces
Continuous angle-tunable birefringence with freeform metasurfaces for arbitrary polarization conversion
Matrix Fourier optics enables a compact full-Stokes polarization camera
A broadband achromatic polarization-insensitive metalens consisting of anisotropic nanostructures
All-Glass, Large Metalens at Visible Wavelength Using Deep-Ultraviolet Projection Lithography
Dielectric multi-momentum meta-transformer in the visible
Broadband Achromatic Metasurface-Refractive Optics
Single-Layer Metasurface with Controllable Multiwavelength Functions
Compact Aberration‐Corrected Spectrometers in the Visible Using Dispersion‐Tailored Metasurfaces
A broadband achromatic metalens for focusing and imaging in the visible
Meta-Lens Doublet in the Visible Region
Giant intrinsic chiro-optical activity in planar dielectric nanostructures
Metalenses at visible wavelengths: Diffraction-limited focusing and subwavelength resolution imaging
Polarization-Insensitive Metalenses at Visible Wavelengths
Broadband high-efficiency dielectric metasurfaces for the visible spectrum
Generation of wavelength-independent subwavelength Bessel beams using metasurfaces
High-Efficiency Broadband Meta-Hologram with Polarization-Controlled Dual Images
High-Efficiency Broadband Anomalous Reflection by Gradient Meta-Surfaces
Fabrication of multilayer metamaterials by femtosecond laser‐induced forward‐transfer technique
Design-by-Learning and Learning-from-Design: White-Box Data-Driven Design of 2D Material-Based Biosensors and Its Impact on Designers
CAREER: First-principles Predictive Understanding of Chemical Order in Complex Concentrated Alloys: Structures, Dynamics, and Defect Characteristics
SBIR Phase I: All-Semiconductor Nanostructured Lenses for High-Tech Industries
Collaborative Research: EAGER: SSMCDAT2023: Data-driven Predictive Understanding of Oxidation Resistance in High-Entropy Alloy Nanoparticles
BRITE Fellow: AI-Enabled Discovery and Design of Programmable Material Systems
Mean-Field Spin Glasses and Related Topics
Collaborative Research: EAGER: SSMCDAT2023: Data-driven Predictive Understanding of Oxidation Resistance in High-Entropy Alloy Nanoparticles
Collaborative Research: I-AIM: Interpretable Augmented Intelligence for Multiscale Material Discovery
Collaborative Research: Microscopic Mechanism of Surface Oxide Formation in Multi-Principal Element Alloys
Collaborative Research: A Hierarchical Multidimensional Network-based Approach for Multi-Competitor Product Design
CAREER: First-principles Predictive Understanding of Chemical Order in Complex Concentrated Alloys: Structures, Dynamics, and Defect Characteristics
Collaborative Research: I-AIM: Interpretable Augmented Intelligence for Multiscale Material Discovery
Collaborative Research: Framework: Data: HDR: Nanocomposites to Metamaterials: A Knowledge Graph Framework
CAREER: Mean Field Spin Glasses and Related Applications
RUI: Poly (vinyl alcohol) Thin Film Dewetting by Controlled Directional Drying
Collaborative Research: Concurrent Design of Quasi-Random Nanostructured Material Systems (NMS) and Nanofabrication Processes using Spectral Density Function
EARS: Enabling Opportunistic Environmental Monitoring with Non-Uniform Sampling and Processing Circuits
Some problems on mean-field spin glasses
Some problems on mean-field spin glasses
Multidimensional Network Analysis for Analyzing and Predicting Complex Customer-Product Relations in Engineering Design
Sub-Picosecond Stress-Induced Conductivity Transitions, Mechanical Transitions and Ferroelectric Transitions
RUI: Fractal Structure Formation from Poly(vinyl alcohol) Adsorption on Silicone Substrates