Area of research
Atomic and Molecular Physics, and Optics · Electrical and Electronic Engineering
Research interest
Research interests include Photodetector, Materials science, Optoelectronics, Dipole, Terahertz radiation, and Polarization (electrochemistry).
Generation of a super-oscillation magnetization hotspot by reversing the electric dipole array radiation
Design terahertz polarizers and vector polarized vortex terahertz wave generators based on the effective dielectric constant of metal gratings
High‐sensitivity polarization‐independent terahertz Taichi‐like micro‐ring sensors based on toroidal dipole resonance for concentration detection of Aβ protein
High-Performance and Stable Sb<sub>2</sub>S<sub>3</sub> Thin-Film Photodetectors for Potential Application in Visible Light Communication
Design and optimization of the performance of self-powered Sb2S3 photodetector by SCAPS-1D simulation and potential application in imaging
Dehydration kinetics and mechanism of the stable isonicotinamide hydrate revealed by terahertz spectroscopy and DFT calculation
5D Opto‐Magnetization Endowed by Physics‐Enhanced Deep Learning
Inverse design of optical cages by using a fully connected neural network and time-reversed dipole radiation
Short‐Wave Infrared Photodetectors and Imaging Sensors Based on Lead Chalcogenide Colloidal Quantum Dots
Insights into Allosteric Mechanisms of the Lung-Enriched p53 Mutants V157F and R158L
Molecular dynamics study on the inhibition mechanisms of ReACp53 peptide for p53–R175H mutant aggregation