Area of research
Biomedical Engineering · Materials Chemistry
Research interest
Research interests include Photonic and Optical Devices, Nanowire Synthesis and Applications, Plasmonic and Surface Plasmon Research, and Phase-change materials and chalcogenides.
Electrically driven long-range solid-state amorphization in ferroic In2Se3
Tunable Metasurface and Flat Optical Zoom Lens on a Stretchable Substrate
Mixed-Mode Operation of Hybrid Phase-Change Nanophotonic Circuits
Optomechanical Enhancement of Doubly Resonant 2D Optical Nonlinearity
Direct Observation of Metal–Insulator Transition in Single-Crystalline Germanium Telluride Nanowire Memory Devices Prior to Amorphization
Electrical Wind Force–Driven and Dislocation-Templated Amorphization in Phase-Change Nanowires
Collaborative Research: DMREF: Deep learning guided twistronics for self-assembled quantum optoelectronics
Collaborative Research: FuSe: Indium selenides based back end of line neuromorphic accelerators
Topological Photodetectors
QII-TAQS: Quantum Circuits Through Symmetry-Driven Valley Optoelectronics
Designing new quantum topological nanomaterials via controlled ion-exchange reactions
Structural and Chemical Changes due to Electrical Stress in Phase-Change Nanowires: An In-Situ Electron Microscopy Study
Material World Network: Understanding and Exploiting Mixed-Mode Ultra-Fast Optical-Electrical Behavior in Nanoscale Phase Change Materials
Fundamental Investigation of Charge Transport and Memory Switching in Amorphized Phase-Change Nanowires
CAREER: Semiconductor Nanowire Quantum Heterostructures: Growth, Characterization, and Quantum Confined Properties and Photonics at the Nanoscale
Nanoscale Crystalline to Amorphous Phase Transition Studies in Nanowires: Controlled Synthesis, Characterization, Memory Switching Devices and Size-Dependent Properties
NER: Nanowire Spectrophotometer for Lab-on-a-Chip Chemical Analysis