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QUANTUM MULTIPROVER INTERACTIVE PROOFS WITH COMMUNICATING PROVERS

机译:具有通信证明的QUANTUM MULTIPROVER交互式协议

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摘要

We introduce a new variant of quantum multiprover interactive proofs (QMIP) where the provers and the verifier are quantum. The verifier can exchange quantum messages with the provers. The provers cannot communicate quantumly between themselves and do not share entanglement, but are unlimited in the classical communication between them, even after receiving messages from the verifier. We show that any language in nondeterministic exponential time (NEXP) can be recognized in this model efficiently, with just two provers and two rounds of communication, and with a constant completeness/soundness gap. This is in contrast to the result of [R. Jain et al., Comm. ACM, 53 (2010), pp. 102-109], which shows that QIP=PSPACE, or equivalently that the set of languages that can be recognized by a quantum verifier communicating with a single quantum prover is equal to PSPACE. To analyze the cheating power of the provers, we give them more power and allow them to perform any separable operation. We then show a unique two-phase protocol in which the provers first commit to a superposition of correct answers to all possible questions, and then in the second phase the verifier opens up the committed answer and checks for correctness and consistency.
机译:我们介绍了量子多重证明者交互式证明(QMIP)的新变体,其中证明者和验证者都是量子的。验证者可以与证明者交换量子消息。证明者之间无法进行量子通信,也不共享纠缠,但即使从验证者收到消息后,证明者之间的经典通信也不受限制。我们证明,在此模型中,只要经过两次证明和两轮交流,并且在完整性/声音间隔方面保持恒定,就可以有效地识别非确定性指数时间(NEXP)中的任何语言。这与[R。 Jain等,Comm。 [ACM,53(2010),第102-109页],显示QIP = PSPACE,或等效地,与单个量子证明者通信的量子证明者可以识别的语言集等于PSPACE。为了分析证明者的作弊能力,我们赋予他们更多的能力,并允许他们执行任何可分离的操作。然后,我们展示了一个独特的两阶段协议,其中证明者首先承诺对所有可能问题的正确答案进行叠加,然后在第二阶段中,验证者打开已确认的答案并检查正确性和一致性。

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