Multi-party Semi-quantum Key Agreement with Delegating Quantum Computation

A multi-party semi-quantum key agreement (SQKA) protocol based on delegating quantum computation (DQC) model is proposed by taking Bell states as quantum resources. In the proposed protocol, the participants only need the ability of accessing quantum channel and preparing single photons {|0〉, |1〉, |...

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Veröffentlicht in:International journal of theoretical physics 2017-10, Vol.56 (10), p.3164-3174
Hauptverfasser: Liu, Wen-Jie, Chen, Zhen-Yu, Ji, Sai, Wang, Hai-Bin, Zhang, Jun
Format: Artikel
Sprache:eng
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Zusammenfassung:A multi-party semi-quantum key agreement (SQKA) protocol based on delegating quantum computation (DQC) model is proposed by taking Bell states as quantum resources. In the proposed protocol, the participants only need the ability of accessing quantum channel and preparing single photons {|0〉, |1〉, |+〉, |−〉}, while the complicated quantum operations, such as the unitary operations and Bell measurement, will be delegated to the remote quantum center. Compared with previous quantum key agreement protocols, this client-server model is more feasible in the early days of the emergence of quantum computers. In order to prevent the attacks from outside eavesdroppers, inner participants and quantum center, two single photon sequences are randomly inserted into Bell states: the first sequence is used to perform the quantum channel detection, while the second is applied to disorder the positions of message qubits, which guarantees the security of the protocol.
ISSN:0020-7748
1572-9575
DOI:10.1007/s10773-017-3484-6