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A dynamic multiparty quantum direct secret sharing based on generalized GHZ states

机译:基于概括GHz状态的动态多方量子直接秘密共享

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This paper proposes a new dynamic multiparty quantum direct secret sharing (DQDSS) using mutually unbiased measurements based on generalized GHZ states. Without any unitary operations, an agent can obtain a shadow of the secret by simply performing a measurement on single photons. In the proposed scheme, multiple agents can be added or deleted and the shared secret need not be changed. Our DQDSS scheme has several advantages. The dealer is not required to retain any photons and can further share a predetermined key instead of a random key to the agents. Agents can update their shadows periodically, and the dealer does not need to be online. Furthermore, the proposed scheme can resist not only the existing attacks, but also cheating attacks from dishonest agents. Hence, compared to some famous DQSS schemes, the proposed scheme is more efficient and more practical. Finally, we establish a mathematical model about the efficiency and security of the scheme and perform simulation analyses with different parameters using MATLAB.
机译:本文使用基于广义GHz状态的相互无偏见的测量提出了一种新的动态多方量子直接秘密共享(DQDS)。在没有任何整体操作的情况下,通过简单地对单个光子进行测量,代理商可以获得秘密的阴影。在所提出的方案中,可以添加或删除多个药剂,不需要改变共享秘密。我们的DQDS计划有几个优点。经销商不需要保留任何光子并且可以进一步共享预定密钥而不是试剂的随机键。代理可以定期更新阴影,并且经销商不需要在线。此外,该方案不仅可以抵抗现有的攻击,还可以欺骗不诚实的代理人的攻击。因此,与一些着名的DQSS计划相比,所提出的方案更有效,更实用。最后,我们建立了关于方案效率和安全性的数学模型,并使用MATLAB进行不同参数进行仿真分析。

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