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20032005
most citedEntanglement concentration for unknown atomic entangled states via entanglement swapping

78 citations · 236 across the 7 of their papers we have counts for

collaborators

7 papers

quant-ph200549 cited

Concentration for unknown atomic entangled states via cavity decay

Zhuo-Liang Cao, Li-Hua Zhang, Ming Yang

We present a physical scheme for entanglement concentration of unknown atomic entangled states via cavity decay. In the scheme, the atomic state is used as stationary qubit and pho…

quant-ph2005

Quantum Information Processing Without Joint Measurement

Ming Yang, Zhuo-Liang Cao

We propose a linear optical scheme for the teleportation of unknown ionic states, the entanglement concentration for nonmaximally entangled states for ions via entanglement swappin…

quant-ph200478 cited

Entanglement concentration for unknown atomic entangled states via entanglement swapping

Ming Yang, Yan Zhao, Wei Song +1

An entanglement concentration scheme for unknown atomic entanglement states is proposed via entanglement swapping in cavity QED. Because the interaction used here is a large-detune…

quant-ph200462 cited

Entanglement swapping without joint Measurement

Ming Yang, Wei Song, Zhuo-Liang Cao

We propose an entanglement swapping scheme in cavity QED. In the scheme, the previously used joint measurement is not needed. The entanglement swapping in our proposal is a non-pos…

quant-ph200310 cited

Generation of pure, ionic entangled states via linear optics

Ming Yang, Zhuo-Liang Cao

In this paper, we propose a novel scheme to generate two-ion maximally entangled states from either pure product states or mixed states using linear optics. Our new scheme is mainl…

quant-ph200337 cited

Entanglement purification for arbitrary unknown ionic states via linear optics

Ming Yang, Wei Song, Zhuo-Liang Cao

An entanglement purification scheme for arbitrary unknown(mixed and pure non-maximally) entangled ionic states is proposed by using linear optical elements. The main advantage of t…