Area of research
Artificial Intelligence · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Quantum Information and Cryptography, Quantum Mechanics and Applications, Quantum Computing Algorithms and Architecture, and Quantum optics and atomic interactions.
648 Hilbert-space dimensionality in a biphoton frequency comb: entanglement of formation and Schmidt mode decomposition
Entanglement-Assisted Communication Surpassing the Ultimate Classical Capacity
Large-alphabet encoding for higher-rate quantum key distribution
Distributed quantum sensing using continuous-variable multipartite entanglement
Resource theory of non-Gaussian operations
Security-proof framework for two-way Gaussian quantum-key-distribution protocols
Optimum Mixed-State Discrimination for Noisy Entanglement-Enhanced Sensing
Entanglement-enhanced Neyman–Pearson target detection using quantum illumination
Quantum illumination for enhanced detection of Rayleigh-fading targets
Photon-efficient imaging with a single-photon camera
Computational multi-depth single-photon imaging
Experimental fast quantum random number generation using high-dimensional entanglement with entropy monitoring
Floodlight quantum key distribution: A practical route to gigabit-per-second secret-key rates
Performance Analysis of Low-Flux Least-Squares Single-Pixel Imaging
Microwave Quantum Illumination
Entanglement-Enhanced Sensing in a Lossy and Noisy Environment
Photon-Efficient Computational 3-D and Reflectivity Imaging With Single-Photon Detectors
Photon-efficient quantum key distribution using time–energy entanglement with high-dimensional encoding
Harnessing high-dimensional hyperentanglement through a biphoton frequency comb
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
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
Unconditional Security of Time-Energy Entanglement Quantum Key Distribution Using Dual-Basis Interferometry
Photon Information Efficient Communication Through Atmospheric Turbulence–Part I: Channel Model and Propagation Statistics
Atmospheric turbulence effects on the performance of a free space optical link employing orbital angular momentum multiplexing
Entanglement’s Benefit Survives an Entanglement-Breaking Channel
Spectral engineering by Gaussian phase-matching for quantum photonics
Gaussian quantum information
Generation and Application of Squeezed States in Doppler- Broadened Atomic Vapors
US-Japan Joint Seminar: Quantum-mechanical Aspects of Quantum Electronics / Monterey, California / July, 1987
Squeezed State Generation Via Intra-Cavity Forward Degenerate Four-Wave Mixing
Atmospheric Optical Communications in Local Area Networks
Optical Communication Systems For Improved Low-Visibility Communication in Networks Environments
Spatial Communication Theory For the Turbulent Atmosphere