Area of research
Electrical and Electronic Engineering · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Photonic and Optical Devices, Optical Network Technologies, Orbital Angular Momentum in Optics, and Advanced Fiber Laser Technologies.
Metasurfaces empower optical multiparameter imaging: A review
An RGB‐Achromatic Aplanatic Metalens
Exceptional points and non-Hermitian photonics at the nanoscale
High-Resolution Metalens Imaging Polarimetry
Finding the superior mode basis for mode-division multiplexing: a comparison of spatial modes in air-core fiber
Reconfigurable structured light generation and its coupling to air–core fiber
Fast encirclement of an exceptional point for highly efficient and compact chiral mode converters
Roadmap on multimode photonics
Remote Measurement of the Angular Velocity Vector Based on Vectorial Doppler Effect Using Air-Core Optical Fiber
Programmable low-power consumption all-optical nonlinear activation functions using a micro-ring resonator with phase-change materials
Full-color enhanced second harmonic generation using rainbow trapping in ultrathin hyperbolic metamaterials
Implementation of a 46-node quantum metropolitan area network
RETRACTED: Evaluation of a small drone performance using fuel cell and battery; Constraint and mission analyzes
Hamiltonian Hopping for Efficient Chiral Mode Switching in Encircling Exceptional Points
Distribution of high-dimensional orbital angular momentum entanglement over a 1 km few-mode fiber
Ultra-compact broadband polarization diversity orbital angular momentum generator with 3.6 × 3.6 μm <sup>2</sup> footprint
A substrate integrated cavity‐fed dual‐polarized filtering patch antenna with high isolation
18 km low-crosstalk OAM + WDM transmission with 224 individual channels enabled by a ring-core fiber with large high-order mode group separation
Tackling Africa’s digital divide
Direct fiber vector eigenmode multiplexing transmission seeded by integrated optical vortex emitters
Terabit free-space data transmission employing orbital angular momentum multiplexing
EPSCoR Research Fellows: NSF: Tuning the magnetic properties of 1T-CrTe2 via intercalation
CAREER: Forward and Inverse Uncertainty Quantification of Cardiovascular Fluid-Structure Dynamics via Multi-fidelity Physics-Informed Bayesian Geometric Deep Learning
NSF-MeitY: Energy-efficient quantum materials based magnetic tunnel junctions for unconventional computing applications
I-Corps: Translation Potential of a Point-of-care System for Fast Multiplexed Detection of Pathogens
LEAPS-MPS: Exploring Thiophosphates as Balanced Middle-infrared Nonlinear Optical Materials
New Particle Formation in the Marine Boundary Layer: The Frequency, Mechanism, and Impact on Cloud Condensation Nuclei
Collaborative Research: A Metamodeling Machine Learning Framework for Multiscale Behavior of Nano-Architectured Crystalline-Amorphous Composites
CAREER: Forward and Inverse Uncertainty Quantification of Cardiovascular Fluid-Structure Dynamics via Multi-fidelity Physics-Informed Bayesian Geometric Deep Learning
Physics-Constrained Deep Learning for Surrogate Modeling of Dynamics of Fluids and Fluid-Structure Interaction
SHF: Small: Collaborative Research: Energy Efficient Strain Assisted Spin Transfer Torque Memory
Computational and Experimental Characterization of Twin-twin Interactions in Hexagonal Metals
NEB: Scalable Perpendicular All-Spin Non-Volatile Logic Devices and Circuits with Hybrid Interconnection
Genetic Dissection of Juvenile Hormone Signaling Pathways
Design and Implementation of a Smart and Highly Efficient Magnetic Heating Scheme for Biomedical Applications
GOALI: New Design, Fabricaiton and Investigation of Novel Spin Torque Transfer Devices