Beaudry Normand J, Moroder Tobias, Lütkenhaus Norbert
Institute for Quantum Computing, University of Waterloo, Waterloo, Canada.
Phys Rev Lett. 2008 Aug 29;101(9):093601. doi: 10.1103/PhysRevLett.101.093601. Epub 2008 Aug 25.
Measurements with photodetectors are naturally described in the infinite dimensional Fock space of one or several modes. For some measurements, a model has been postulated which describes the full measurement as a composition of a mapping (squashing) of the signal into a small dimensional Hilbert space followed by a specified target measurement. We present a formalism to investigate whether a given measurement pair of full and target measurements can be connected by a squashing model. We show that a measurement used in the Bennett-Brassard 1984 (BB84) protocol does allow a squashing description, although the corresponding six-state protocol measurement does not. As a result, security proofs for the BB84 protocol can be based on the assumption that the eavesdropper forwards at most one photon, while the same does not hold for the six-state protocol.
用光电探测器进行的测量自然是在单模或多模的无限维福克空间中描述的。对于某些测量,已经假定了一个模型,该模型将完整测量描述为信号映射(压缩)到小维希尔伯特空间,随后进行指定的目标测量。我们提出一种形式体系来研究给定的完整测量和目标测量对是否可以通过压缩模型连接。我们表明,1984年贝内特 - 布拉萨德(BB84)协议中使用的测量确实允许压缩描述,尽管相应的六态协议测量不允许。结果,BB84协议的安全性证明可以基于窃听者最多转发一个光子的假设,而六态协议则不然。