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Blind Quantum Signature with Blind Quantum Computation

机译:盲量子计算盲量子签名

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摘要

Blind quantum computation allows a client without quantum abilities to interact with a quantum server to perform a unconditional secure computing protocol, while protecting client's privacy. Motivated by confidentiality of blind quantum computation, a blind quantum signature scheme is designed with laconic structure. Different from the traditional signature schemes, the signing and verifying operations are performed through measurement-based quantum computation. Inputs of blind quantum computation are securely controlled with multi-qubit entangled states. The unique signature of the transmitted message is generated by the signer without leaking information in imperfect channels. Whereas, the receiver can verify the validity of the signature using the quantum matching algorithm. The security is guaranteed by entanglement of quantum system for blind quantum computation. It provides a potential practical application for e-commerce in the cloud computing and first-generation quantum computation.
机译:盲量子计算允许在没有量子能力的客户端与量子服务器交互以执行无条件安全计算协议,同时保护客户端的隐私。通过盲量子计算的机密性,盲量子签名方案采用Lenonic结构设计。与传统的签名方案不同,通过基于测量的量子计算执行签名和验证操作。盲量子计算的输入被安全地控制了多态纠缠状态。传输消息的唯一签名由签名者生成,而不会在不完美信道中泄漏信息。虽然,接收器可以使用量子匹配算法验证签名的有效性。通过量子系统的纠缠保证了安全性的盲量子计算。它为云计算和第一代量子计算提供了对电子商务的潜在实际应用。

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