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Quantum Contract Signing with Entangled Pairs

机译:Quantum合同与纠缠成对签名

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摘要

We present a quantum scheme for signing contracts between two clients (Alice and Bob) using entangled states and the services of a third trusted party (Trent). The trusted party is only contacted for the initialization of the protocol, and possibly at the end, to verify clients’ honesty and deliver signed certificates. The protocol is fair, i.e., the probability that a client, say Bob, can obtain a signed copy of the contract, while Alice cannot, can be made arbitrarily small, and scales as N−1/2, where 4N is the total number of rounds (communications between the two clients) of the protocol. Thus, the protocol is optimistic, as cheating is not successful, and the clients rarely have to contact Trent to confirm their honesty by delivering the actual signed certificates of the contract. Unlike the previous protocol (Paunković et al., Phys. Rev. A84, 062331 (2011)), in the present proposal, a single client can obtain the signed contract alone, without the need for the other client’s presence. When first contacting Trent, the clients do not have to agree upon a definitive contract. Moreover, even upon terminating the protocol, the clients do not reveal the actual contract to Trent. Finally, the protocol is based on the laws of physics, rather than on mathematical conjectures and the exchange of a large number of signed authenticated messages during the actual contract signing process. Therefore, it is abuse-free, as Alice and Bob cannot prove they are involved in the contract signing process.
机译:我们使用纠缠州和第三次值得信赖党(Trent)的服务来签订两名客户(Alice和Bob)之间的签约合同的量子计划。值得信赖的政党仅联系议定书的初始化,并且可能最终,以验证客户的诚实并提供签名证书。该协议是公平的,即客户说Bob的概率可以获得合同的签名副本,而Alice不能,可以任意小,并且缩放为N-1/2,其中4N是总数协议的圆形(两个客户之间的通信)。因此,该协议是持态度,因为作弊不成功,而客户很少必须通过提供合同的实际签名证书来联系Trent来确认他们的诚实。与先前的协议不同(Paunković等,phys。rev. a在本提案中,84,062331(2011)),单一客户可以单独获得签署的合同,无需其他客户的存在。第一次接触特伦特时,客户不必同意最终合同。此外,即使在终止方案后,客户也不会透露对Trent的实际合同。最后,该协议基于物理定律,而不是在数学猜想中以及在实际合同签名过程中交换大量签名的经过签名的消息。因此,它是滥用的,因为爱丽丝和鲍勃不能证明他们参与合同签名过程。

著录项

  • 期刊名称 Entropy
  • 作者单位
  • 年(卷),期 2019(21),9
  • 年度 2019
  • 页码 821
  • 总页数 26
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:合同签名;量子密码学;量子信息;
  • 入库时间 2022-08-21 12:20:47

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