Area of research
Artificial Intelligence · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Quantum entanglement, Computer science, Physics, Quantum sensor, Quantum key distribution, and Quantum metrology.
Entanglement-enhanced optomechanical sensing
Entanglement-enhanced optomechanical sensor array with application to dark matter searches
Large-alphabet time-bin quantum key distribution and Einstein–Podolsky–Rosen steering via dispersive optics
Entangled Sensor-Networks for Dark-Matter Searches
Demonstration of Entanglement-Enhanced Covert Sensing
Quantum receiver enhanced by adaptive learning
Entanglement-Assisted Communication Surpassing the Ultimate Classical Capacity
Quantum-Enhanced Data Classification with a Variational Entangled Sensor Network
Distributed quantum sensing
Demonstration of a Reconfigurable Entangled Radio-Frequency Photonic Sensor Network
Entanglement-Assisted Absorption Spectroscopy
Large-alphabet encoding for higher-rate quantum key distribution
Repeater-enhanced distributed quantum sensing based on continuous-variable multipartite entanglement
Distributed quantum sensing using continuous-variable multipartite entanglement
Quantum key distribution using basis encoding of Gaussian-modulated coherent states
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
Floodlight quantum key distribution: A practical route to gigabit-per-second secret-key rates
Entanglement-Enhanced Sensing in a Lossy and Noisy Environment
Photon-efficient quantum key distribution using time–energy entanglement with high-dimensional encoding
Unconditional Security of Time-Energy Entanglement Quantum Key Distribution Using Dual-Basis Interferometry
Entanglement’s Benefit Survives an Entanglement-Breaking Channel