Area of research
Electrical and Electronic Engineering · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Materials science, Optoelectronics, Graphene, Photodetection, Photonic crystal, and Transistor.
Ferroelectrically gated two-dimensional bismuth oxyselenides for strain-invariant flexible synaptic thin-film transistors
CMOS-compatible 2D semiconductor-nitride ferroelectric based optoelectronic memristive transistors for neuromorphic sensory computing and optical decoding
Reconfigurable Logic and in‐Memory Computing Based on Electrically Controlled Charge Trapping in Dielectric Engineered 2D Semiconductor Transistors
Solid-state non-volatile memories based on vdW heterostructure-based vertical-transport ferroelectric field-effect transistors
2D materials-enabled optical modulators: From visible to terahertz spectral range
Waveguide-Integrated MoTe<sub>2</sub> <i>p</i>–<i>i</i>–<i>n</i> Homojunction Photodetector
Integration of topological insulator nanogap with atomic single layer for boosting photoluminescence
Magnetic plasmon resonances in nanostructured topological insulators for strongly enhanced light–MoS2 interactions
Second Harmonic and Sum-Frequency Generations from a Silicon Metasurface Integrated with a Two-Dimensional Material
WS2 mode-locked ultrafast fiber laser
Chip-integrated ultrafast graphene photodetector with high responsivity
Controlling the spontaneous emission rate of monolayer MoS<sub>2</sub> in a photonic crystal nanocavity
Enhanced photodetection in graphene-integrated photonic crystal cavity
Strong Enhancement of Light–Matter Interaction in Graphene Coupled to a Photonic Crystal Nanocavity
A high-resolution spectrometer based on a compact planar two dimensional photonic crystal cavity array