activity
20092015
most citedEffect of weak measurement on entanglement distribution over noisy channels

13 citations · 13 across the 1 of their papers we have counts for

collaborators

6 papers

quant-ph2015★ 13 cited

Effect of weak measurement on entanglement distribution over noisy channels

Xin-Wen Wang, Sixia Yu, Deng-Yu Zhang +1

Being able to implement effective entanglement distribution in noisy environments is a key step towards practical quantum communication, and long-term efforts have been made on the…

quant-ph2013

Many-to-one remote information concentration for qudits and multipartite entanglement

Xin-Wen Wang, Shi-Qing Tang, Li-Jun Xie +2

Telecloning and its reverse process, referred to as remote information concentration(RIC), have attracted considerable interest because of their potential applications in quantum-i…

quant-ph2011

Photonic two-qubit parity gate with tiny cross-Kerr nonlinearity

Xin-Wen Wang, Deng-Yu Zhang, Shi-Qing Tang +3

The cross-Kerr nonlinearity (XKNL) effect can induce efficient photon interactions in principle with which photonic multiqubit gates can be performed using far fewer physical resou…

quant-ph2011

Remote information concentration and multipartite entanglement in multilevel systems

Xin-Wen Wang, Deng-Yu Zhang, Guo-Jian Yang +2

Remote information concentration (RIC) in -level systems (qudits) is studied. It is shown that the quantum information initially distributed in three spatially separated qudits…

quant-ph2011

Multiparty hierarchical quantum-information splitting

Xin-Wen Wang, Deng-Yu Zhang, Shi-Qing Tang +1

We propose a scheme for multiparty hierarchical quantum-information splitting (QIS) with a multipartite entangled state, where a boss distributes a secret quantum state to two grad…

quant-ph2009

Hierarchical quantum information splitting

Xin-Wen Wang, Li-Xin Xia, Zhi-Yong Wang

We present a scheme for asymmetric quantum information splitting, where a sender distributes asymmetrically a qubit to distant agents in a network. The asymmetric distribution lead…