activity
20122023
most citedIdentifying the orbital angular momentum of light based on atomic ensembles

19 citations · 58 across the 7 of their papers we have counts for

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6 papers · 1 filter

quant-ph2023

Witnessing Quantum Incompatibility Structures in High-Dimensional Multimeasurement Systems

Xiaolin Zhang, Rui Qu, Zehong Chang +6

Quantum incompatibility, referred as the phenomenon that some quantum measurements cannot be performed simultaneously, is necessary for various quantum information processing tasks…

quant-ph202115 cited

Phase gradient protection of stored spatially multimode perfect optical vortex beams in a diffused rubidium vapor

Yun Chen, Jinwen Wang, Chengyuan Wang +5

We experimentally investigate the optical storage of perfect optical vortex (POV) and spatially multimode perfect optical vortex (MPOV) beams via electromagnetically induced transp…

quant-ph2020

Towards efficient quantum memory of orbital angular momentum qubits in cold atoms

Chengyuan Wang, Ya Yu, Yun Chen +7

The spatial modes of light, carrying a quantized amount of orbital angular momentum (OAM), is one of the excellent candidates that provides access to high-dimensional quantum state…

quant-ph2019

Efficient quantum state tomography with auxiliary Hilbert space

Ruifeng Liu, Junling Long, Pei Zhang +4

Quantum state tomography is an important tool for quantum communication, computation, metrology, and simulation. Efficient quantum state tomography on a high dimensional quantum sy…

quant-ph20186 cited

Towards practical high-speed high dimensional quantum key distribution using partial mutual unbiased basis of photon's orbital angular momentum

Fumin Wang, Pei Zeng, Xiaoli Wang +3

Quantum Key Distribution (QKD) guarantees the security of communication with quantum physics. Most of widely adopted QKD protocols currently encode the key information with binary…

quant-ph201218 cited

Implementing the Deutsch's algorithm with spin-orbital angular momentum of photon without interferometer

Pei Zhang, Yan Jiang, Rui-Feng Liu +3

Deutsch's algorithm is the simplest quantum algorithm which shows the acceleration of quantum computer. In this paper, we theoretically advance a scheme to implement quantum Deutsc…