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Novel Quantum Voting Protocol with Eight-Qubit Cluster Entangled State
International Journal of Theoretical Physics ( IF 1.4 ) Pub Date : 2020-08-08 , DOI: 10.1007/s10773-020-04452-x
Yan-Ping Li , Fu-xiao Zhou , Tian-yin Wang , Lai-feng Lu

Based on an eight-qubit cluster entangled state, a novel quantum voting protocol is put forward, where the voting message of any eligible voter Bob can be transferred to the teller David with the help of multiple supervisors Alicej(j = 3, 4, ∗). The anonymous authentication between voters and the vote management center (VMC) provides the anonymity of Bob’s identity and voting contents. The supervision in the whole voting process can avoid the teller David’s dishonest behaviour. The quantum one-time pad encryption and quantum key distribution (QKD) protocols are adopted to guarantee the unconditional security of our proposed voting protocol. Additionally, the teller Bob can successfully recover the voting message with probability 1 and our protocol only depends on Bell measurement and single particle measurement, which makes our quantum voting protocol more practical and easy to implement with currently available technology.

中文翻译:

具有八量子比特簇纠缠态的新型量子投票协议

基于八量子比特簇纠缠态,提出了一种新颖的量子投票协议,在多个监督者 Alicej(j = 3, 4, ∗ )。选民与投票管理中心(VMC)之间的匿名身份验证提供了 Bob 身份和投票内容的匿名性。整个投票过程的监督可以避免出纳大卫的不诚实行为。采用量子一次性加密和量子密钥分发(QKD)协议来保证我们提出的投票协议的无条件安全。此外,出纳员 Bob 可以以概率 1 成功恢复投票消息,我们的协议仅依赖于贝尔测量和单粒子测量,
更新日期:2020-08-08
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