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Improving the Security of Quantum Protocols via Commit-and-Open

机译:通过提交和打开提高量子协议的安全性

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We cousider two-party quantum protocols starting with a transmission of some random BB84 qubits followed by classical messages. We show a general "compiler" improving the security of such protocols: if the original protocol is secure against an "almost honest" adversary, then the compiled protocol is secure against an arbitrary computationally bounded (quantum) adversary. The compilation preserves the number of qubits sent and the number of rounds up to a constant factor. The compiler also preserves security in the bounded-quantum-storage model (BQSM), so if the original protocol was BQSM-secure, the compiled protocol can only be broken by an adversary who has large quantum memory and large computing power. This is in contrast to known BQSM-secure protocols, where security breaks down completely if the adversary has larger quantum memory than expected. We show how our technique can be applied to quantum identification and oblivious transfer protocols.
机译:我们采用两方量子协议,首先传输一些随机的BB84量子位,然后传输经典消息。我们展示了一个通用的“编译器”,它提高了此类协议的安全性:如果原始协议对“几乎诚实的”对手是安全的,那么编译后的协议对任意计算界(量子)的对手都是安全的。编译将保留发送的qubit数量以及向上舍入到一个恒定因子的数量。编译器还在有界量子存储模型(BQSM)中保留了安全性,因此,如果原始协议是BQSM安全的,则只有具有大的量子内存和强大的计算能力的对手才能破坏编译的协议。这与已知的BQSM安全协议相反,后者如果对手具有比预期更大的量子内存,则安全性将完全崩溃。我们展示了如何将我们的技术应用于量子识别和遗忘传输协议。

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