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We calculate an achievable secret key rate for quantum key distribution with a finite number of signals, by evaluating the min-entropy explicitly. The min-entropy can be expressed in terms of the gues...
Continuous variable quantum key distribution in non-Markovian channels     non-Markovian  variable quantum       font style='font-size:12px;'> 2010/11/8
We address continuous variable quantum key distribution (QKD) in non-Markovian lossy channels and show how the non-Markovian features may be exploited to enhance security and/or to detect the presence...
We consider quantum key distribution in the device-independent scenario, i.e., where the legitimate parties do not know (or trust) the exact specification of their apparatus. We show how secure key ...
Device-independent quantum key distribution aims to provide key distribution schemes whose security is based on the laws of quantum physics but which does not require any assumptions about the intern...
We propose and experimentally investigate a fibre-based quantum key distribution system, which employs polarization qubits encoded into faint laser pulses. As a novel feature, it allows sending of cla...
Entangled Quantum Key Distribution with a Biased Basis Choice     Quantum Key Distribution  Basis Choice       font style='font-size:12px;'> 2010/4/8
We investigate a quantum key distribution (QKD) scheme which utilizes a biased basis choice in order to increase the efficiency of the scheme. The optimal bias between the two measurement bases, a mor...
Every security analysis of quantum key distribution (QKD) relies on a faithful modeling of the employed quantum states. Many photon sources, like for instance a parametric down conversion (PDC) source...
The use of decoy states in quantum key distribution (QKD) has provided a method for substantially increasing the secret key rate and distance that can be covered by QKD protocols with practical signal...
Decoy state protocols are a useful tool for many quantum key distribution systems implemented with weak coherent pulses, allowing significantly better secret bit rates and longer maximum distances. In...
Reconciliation is an essential part of any secret-key agreement protocol and hence of a Quantum Key Distribution (QKD) protocol, where two legitimate parties are given correlated data and want to agre...
2007Vol.47No.3pp.441-445DOI: Unsymmetrical Quantum Key Distribution Using Tripartite Entanglement XIONG Jin,1 ZHANG Zhe-Shen,1 ZHOU Nan-Run,1 PENG Jin-Ye,2 and ZENG Gui-Hua1 ...
2007Vol.47No.3pp.459-463DOI: Deterministic Quantum Key Distribution Using Two Non-orthogonal Entangled States GUO Ying1,2 and ZENG Gui-Hua2 1 Department of Communication...
2007Vol.47No.1pp.49-52DOI: Measuring-Basis Encrypted Quantum Key Distribution with Four-State Systems CHEN Pan,1 LI Yan-Song,1 DENG Fu-Guo,2,3 and LONG Gui-Lu1,4 1 Key L...
2006Vol.46No.1pp.65-68DOI: Quantum Key Distribution Using Four-Qubit W State CAO Hai-Jing and SONG He-Shan Department of Physics, Dalian University of Technology, Dalian...
2005Vol.43No.4pp.627-630DOI: Quantum Key Distribution Scheme Based on Dense Encoding in Entangled States ZHANG Xiao-Long,1,2 ZHANG Yue-Xia,1,2 and GAO Ke-Lin1,2 1 State ...

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