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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Attacking quantum key distribution with single-photon two-qubit quantum logic
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Attacking quantum key distribution with single-photon two-qubit quantum logic

机译:用单光子二量子量子逻辑攻击量子密钥分配

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摘要

The Fuchs-Peres-Brandt (FPB) probe realizes the most powerful individual attack on Bennett-Brassard 1984 quantum key distribution (BB84 QKD) by means of a single controlled-NOT (CNO) gate. This paper describes a complete physical simulation of the FPB-probe attack on polarization-based BB84 QKD using a deterministic CNOT constructed from single-photon two-qubit quantum logic. Adding polarization-preserving quantum nondemolition measurements of photon number to this configuration converts the physical simulation into a true deterministic realization of the FPB attack.
机译:Fuchs-Peres-Brandt(FPB)探针通过单个可控NOT(CNO)门实现了对Bennett-Brassard 1984量子密钥分发(BB84 QKD)的最强大的单独攻击。本文使用由单光子二量子位量子逻辑构成的确定性CNOT描述了基于偏振的BB84 QKD对FPB探针攻击的完整物理模拟。将光子数的保偏偏振量子非爆破测量值添加到此配置中,可以将物理模拟转换为FPB攻击的真正确定性实现。

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