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20172025
most citedManipulating the direction of Einstein-Podolsky-Rosen steering

61 citations · 261 across the 8 of their papers we have counts for

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14 papers · 1 filter

quant-ph2025

High-Efficiency Quantum Memory of Full-Bandwidth Squeezed Light

Jinxian Guo, Meihong Wang, Zeliang Wu +6

In continuous-variable quantum information processing, it is crucial to develop high-efficiency and broadband quantum memory of squeezed light, which enables the storage of full-ba…

quant-ph202413 cited

One-Sided Device-Independent Random Number Generation Through Fiber Channels

Jinfang Zhang, Yi Li, Mengyu Zhao +7

Randomness is an essential resource and plays important roles in various applications ranging from cryptography to simulation of complex systems. Certified randomness from quantum…

quant-ph202228 cited

Experimental preparation and manipulation of squeezed cat states via an all-optical in-line squeezer

Meihong Wang, Miao Zhang, Zhongzhong Qin +5

The squeezed cat state, an essential quantum resource, can be used for quantum error correction and slowing decoherence of the optical cat state. However, preparing a squeezed cat…

quant-ph202259 cited

Experimental demonstration of remotely creating Wigner negativity via quantum steering

Shuheng Liu, Dongmei Han, Na Wang +7

Non-Gaussian states with Wigner negativity are of particular interest in quantum technology due to their potential applications in quantum computing and quantum metrology. However,…

quant-ph202219 cited

Deterministic distribution of orbital angular momentum multiplexed continuous-variable entanglement and quantum steering

Li Zeng, Rong Ma, Hong Wen +4

Orbital angular momentum (OAM) multiplexing provides an efficient method to improve data-carrying capacity in various quantum communication protocols. It is a precondition to distr…

quant-ph2021

Sudden death and revival of Gaussian Einstein-Podolsky-Rosen steering in noisy channels

Xiaowei Deng, Yang Liu, Meihong Wang +2

Einstein-Podolsky-Rosen (EPR) steering is a useful resource for secure quantum information tasks. It is crucial to investigate the effect of inevitable loss and noise in quantum ch…