Area of research
Biomedical Engineering · Electrical and Electronic Engineering
Research interest
Research interests include Plasmon, Materials science, Optics, Directivity, Physics, and Condensed matter physics.
Accurate modeling of a biological nanopore with an extended continuum framework
Engineering electric and magnetic dipole coupling in arrays of dielectric nanoparticles
Enhancing Magnetic Dipole Emission by a Nano-Doughnut-Shaped Silicon Disk
Electrically Driven Unidirectional Optical Nanoantennas
Single Asymmetric Plasmonic Antenna as a Directional Coupler to a Dielectric Waveguide
All-Dielectric Antenna Wavelength Router with Bidirectional Scattering of Visible Light
Thermal and quantum depletion of superconductivity in narrow junctions created by controlled electromigration
Revisiting the Surface Sensitivity of Nanoplasmonic Biosensors
Directional Fluorescence Emission by Individual V-Antennas Explained by Mode Expansion
Mode Parity-Controlled Fano- and Lorentz-like Line Shapes Arising in Plasmonic Nanorods
300 mm Wafer-level, ultra-dense arrays of Au-capped nanopillars with sub-10 nm gaps as reliable SERS substrates
Biosensing Using Diffractively Coupled Plasmonic Crystals: the Figure of Merit Revisited
Unidirectional Side Scattering of Light by a Single-Element Nanoantenna
Mapping Magnetic Near-Field Distributions of Plasmonic Nanoantennas
Capturing Wetting States in Nanopatterned Silicon
Influence of artificial pinning on vortex lattice instability in superconducting films
Controlling flux flow dissipation by changing flux pinning in superconducting films
Volumetric Method of Moments and Conceptual Multilevel Building Blocks for Nanotopologies