Area of research
Biomedical Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Plasmon, Materials science, Physics, Optoelectronics, Nanophotonics, and Nanotechnology.
Nonlocality in photonic materials and metamaterials: roadmap
Quantum Mechanics in Plasmonic Nanocavities: from Theory to Applications
Strain to shine: stretching-induced three-dimensional symmetries in nanoparticle-assembled photonic crystals
Wireless Secure Communication Based on Code Domain Space-Time Modulated Metasurface
Highly Efficient Wideband mmWave Rectennas for Wireless Power Transfer System With Low-Cost Multinode Tracking Capability
Symmetry‐Protected Spoof Localized Surface Plasmonic Skyrmion
Detecting mid-infrared light by molecular frequency upconversion in dual-wavelength nanoantennas
Interfering Plasmons in Coupled Nanoresonators to Boost Light Localization and SERS
Comparison of Hydrodynamic Models for the Electromagnetic Nonlocal Response of Nanoparticles
How Ultranarrow Gap Symmetries Control Plasmonic Nanocavity Modes: From Cubes to Spheres in the Nanoparticle-on-Mirror
Fast Dynamic Color Switching in Temperature‐Responsive Plasmonic Films
Nonlinear Superchiral Meta‐Surfaces: Tuning Chirality and Disentangling Non‐Reciprocity at the Nanoscale
Directional Fluorescence Emission by Individual V-Antennas Explained by Mode Expansion
Plasmon‐Enhanced Sub‐Wavelength Laser Ablation: Plasmonic Nanojets
Volumetric Method of Moments and Conceptual Multilevel Building Blocks for Nanotopologies