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Unconditionally Secure Quantum Bit Commitment Protocol Based on Incomplete Information

机译:基于不完全信息的无条件安全量子比特承诺协议

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This paper is reversing the current belief on Quantum Bit Commitment. Several papers have claimed and given a formal proof that quantum bit commitment is impossible. Nevertheless, the hypotheses of the formal mathematical model are too restrictive and do not exhaustively reflect the original definition of the problem. They share the same unnecessary restriction that the responsibility of hiding information and committing to a bit value is attributed to the same communicating partner. The protocol described here fully abides to the original description of the bit commitment problem.The two communicating partners share responsibilities, one partner is mostly responsible for hiding information and the other one for committing to the bit value. The security of the protocol derives from quantum properties such as the unclonability of unknown states, the indistinguishability of non-orthogonal states and also from randomly discarding and permuting qubits. The protocol is safe from classical attacks and quantum attacks using entanglement. The level of security can be made arbitrarily large by using more qubits. This result opens the door for a whole set of cryptographic applications using bit commitment as a building block: remote coin tossing, zero-knowledge proofs and secure two-party computation.
机译:本文颠覆了当前关于量子比特承诺的信念。几篇论文声称并提供了正式的证明,证明量子比特承诺是不可能的。但是,形式数学模型的假设过于局限,不能完全反映问题的原始定义。它们具有相同的不必要限制,即隐藏信息和提交比特值的责任归于同一通信伙伴。这里描述的协议完全遵循比特承诺问题的原始描述。两个通信伙伴共同承担责任,一个伙伴主要负责隐藏信息,另一个伙伴负责承诺比特值。该协议的安全性源于量子属性,例如未知状态的不可克隆性,非正交状态的不可区分性,以及源于随机丢弃和置换量子位。该协议对于使用纠缠的经典攻击和量子攻击是安全的。通过使用更多的量子比特,安全级别可以任意提高。该结果为使用位承诺作为构建块的整个密码学应用程序打开了大门:远程抛硬币,零知识证明和安全的两方计算。

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