← back to search

Bi‐Heng Liu

University of Science and Technology of China · CN
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 Neural Networks and Reservoir Computing.
h-index
38
citations
5,281
works
194
NIH funding
primary concept
Physics
email

Recent publications

Fully tunable optical filter based on a thin-film lithium niobate microring resonator
Optics Letters 2026cited by 0position: contributordoi
Experimental Genuine Quantum Nonlocality in the Triangle Network
Physical Review Letters 2026cited by 0position: contributordoi
Observation of Residual Entanglement in Entanglement Purification
Physical Review Letters 2025cited by 9position: contributordoi
Simultaneous Verification of Genuine Multipartite Nonlocality and Full Network Nonlocality
Physical Review Letters 2025cited by 9position: contributordoi
Quantum Stochastic Communication via High-Dimensional Entanglement
Physical Review Letters 2025cited by 6position: contributordoi
Compression of Entanglement Improves Quantum Communication
Laser & Photonics Reviews 2025cited by 3position: contributordoi
Detecting stereoscopic distribution of carbon dioxide using single photon spectroscopy
Fundamental Research 2025cited by 2position: contributordoi
High‐Dimensional Remote State Preparation with Metasurface‐Based Hyper‐Entangled Photon Source
Laser & Photonics Reviews 2025cited by 2position: contributordoi
Higher-dimensional symmetric informationally complete measurement via programmable photonic integrated optics
Optica 2025cited by 1position: contributordoi
Certification of genuinely entangled subspaces of the five qubit code via robust self-testing.
2025cited by 0position: contributordoi
Observation of Genuine High-dimensional Multi-partite Non-locality in Entangled Photon States.
2025cited by 0position: contributordoi
Randomness versus Nonlocality in Multiple-Input and Multiple-Output Quantum Scenario.
2025cited by 0position: contributordoi
Practical Advantage of Classical Communication in Entanglement Detection
Physical Review Letters 2025cited by 0position: contributordoi
Experimental aspects of indefinite causal order in quantum mechanics
Nature Reviews Physics 2024cited by 31position: contributordoi
Demonstration of superior communication through thermodynamically free channels in an optical quantum switch
Physical Review A 2024cited by 7position: contributordoi
Nonlocal photonic quantum gates over 7.0 km.
2024cited by 6position: contributordoi
Frequency-locked Si<sub>3</sub>N<sub>4</sub> microring for Doppler frequency shift detection
Optics Express 2024cited by 2position: contributordoi
Experimental Catalytic Amplification of Asymmetry
Physical Review Letters 2024cited by 2position: contributordoi
Experimental Equivalence Checking of Quantum Circuits by Nonlocality
Physical Review Letters 2024cited by 1position: contributordoi
Electro-optically tunable optical delay on a lithium niobate photonic chip.
2024cited by 1position: contributordoi
Observation of Diverse Asymmetric Structures in High-Dimensional Einstein-Podolsky-Rosen Steering.
2024cited by 1position: contributordoi
Optical simulation of a quantum cooling engine powered by entangled measurements
Optica 2024cited by 0position: contributordoi
Progress in quantum teleportation
Nature Reviews Physics 2023cited by 231position: contributordoi
Experimental super-Heisenberg quantum metrology with indefinite gate order
Nature Physics 2023cited by 48position: contributordoi
Preparation of multiphoton high-dimensional GHZ states
Optics Express 2023cited by 21position: contributordoi
Semi-device-independent certification of indefinite causal order in a photonic quantum switch
Optica 2023cited by 19position: contributordoi
Self-testing of a single quantum system from theory to experiment
npj Quantum Information 2023cited by 12position: contributordoi
Device-independent verification of Einstein–Podolsky–Rosen steering
Optica 2023cited by 12position: contributordoi
Self-Testing of a Single Quantum System: Theory and Experiment
2023cited by 0position: contributordoi
On-chip path encoded photonic quantum Toffoli gate
Photonics Research 2022cited by 41position: contributordoi

Grants

No grants ingested yet.

Frequent collaborators

· 49 papers (2019–2026)Chuan-Feng Li · University of Science and Technology of China16 papers (2020–2025)Yu Guo · 11 papers (2020–2025)Yun-Feng Huang · 7 papers (2019–2025) · 6 papers (2020–2026)Chao Zhang · Beijing Academy of Quantum Information Sciences6 papers (2021–2025)Guang‐Can Guo · University of Science and Technology of China4 papers (2020–2026) · 4 papers (2020–2025)Armin Tavakoli · SpringerNature4 papers (2025–2025)Huan Cao · University of Vienna3 papers (2024–2026)Marcus Huber · TU Wien3 papers (2020–2021)Shuming Wang · Fudan University2 papers (2020–2025)Din Ping Tsai · City University of Hong Kong2 papers (2020–2025)Yujie Chen · Zhejiang Normal University2 papers (2020–2020)Chao Zhang · University of Science and Technology of China2 papers (2020–2020)Lin Li · University of Science and Technology Liaoning2 papers (2020–2025)Xiaoqin Gao · University of Ottawa2 papers (2021–2025)Jia-Le Miao · 南开大学2 papers (2024–2025)Matej Pivoluska · Institute of Physics, Slovak Academy of Sciences2 papers (2020–2021)Yu Pan · Springer Nature2 papers (2024–2025)