物理
量子隐形传态
W州
量子纠缠
量子力学
群集状态
隐形传送
光子
自发参量下转换
光子纠缠
量子
量子网络
量子信道
标识
DOI:10.1080/09500349708231877
摘要
Abstract Abstract Entangled states are key ingredients to the new field of quantum information, including quantum dense coding, teleportation, and computation. However, only a relatively small class of entangled states has been investigated experimentally, or even discussed extensively. In particular, efforts to date have focused on two particles entangled in a single degree of freedom, for example polarization, or energy, or momentum direction. Novel phase-matching arrangements in spontaneous parametric down-conversion allow the preparation of pairs of photons that are simultaneously entangled in all of these. We shall call such a multiply-entangled state 'hyper-entangled'. In addition, an even more general state–-a non-maximally entangled state–-should be realizable, in which the amplitudes of the contributing terms are not equal.
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