Area of research
Electrical and Electronic Engineering · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Orbital Angular Momentum in Optics, Optical Wireless Communication Technologies, Optical Network Technologies, and Photonic and Optical Devices.
Building Neural Machine Translation Systems for Multilingual Participatory Spaces
Moving-Object Detection From Consecutive Stereo Pairs Using Slanted Plane Smoothing
Roadmap on structured light
Experimental characterization of a 400 Gbit/s orbital angular momentum multiplexed free-space optical link over 120 m
Optical communications using orbital angular momentum beams
4 × 20 Gbit/s mode division multiplexing over free space using vector modes and a q-plate mode (de)multiplexer
Mode division multiplexing using an orbital angular momentum mode sorter and MIMO-DSP over a graded-index few-mode optical fibre
Phase correction for a distorted orbital angular momentum beam using a Zernike polynomials-based stochastic-parallel-gradient-descent algorithm
Turbulence compensation of an orbital angular momentum and polarization-multiplexed link using a data-carrying beacon on a separate wavelength
High-capacity millimetre-wave communications with orbital angular momentum multiplexing
100 Tbit/s free-space data link enabled by three-dimensional multiplexing of orbital angular momentum, polarization, and wavelength
Adaptive-optics-based simultaneous pre- and post-turbulence compensation of multiple orbital-angular-momentum beams in a bidirectional free-space optical link
Adaptive optics compensation of multiple orbital angular momentum beams propagating through emulated atmospheric turbulence
Nonlinear conversion efficiency in Kerr frequency comb generation
Crosstalk mitigation in a free-space orbital angular momentum multiplexed communication link using 4×4 MIMO equalization
Atmospheric turbulence effects on the performance of a free space optical link employing orbital angular momentum multiplexing