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Test of mutually unbiased bases for six-dimensional photonic quantum systems

机译:六维光子量子系统互不偏基的测试

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摘要

In quantum information, complementarity of quantum mechanical observables plays a key role. The eigenstates of two complementary observables form a pair of mutually unbiased bases (MUBs). More generally, a set of MUBs consists of bases that are all pairwise unbiased. Except for specific dimensions of the Hilbert space, the maximal sets of MUBs are unknown in general. Even for a dimension as low as six, the identification of a maximal set of MUBs remains an open problem, although there is strong numerical evidence that no more than three simultaneous MUBs do exist. Here, by exploiting a newly developed holographic technique, we implement and test different sets of three MUBs for a single photon six-dimensional quantum state (a “qusix”), encoded exploiting polarization and orbital angular momentum of photons. A close agreement is observed between theory and experiments. Our results can find applications in state tomography, quantitative wave-particle duality, quantum key distribution.
机译:在量子信息中,量子力学可观察物的互补性起着关键作用。两个互补观测值的本征态形成一对相互无偏的基数(MUB)。更一般地,一组MUB由全部成对无偏的碱基组成。除了Hilbert空间的特定尺寸外,MUB的最大集合通常是未知的。即使对于低至六维的尺寸,最大数量的MUB的标识仍然是一个悬而未决的问题,尽管有强有力的数字证据表明确实存在不超过三个的MUB。在这里,通过利用最新开发的全息技术,我们针对单个光子六维量子态(“ qusix”)实现并测试了三个MUB的不同集合,并利用光子的极化和轨道角动量进行了编码。在理论和实验之间观察到了紧密的一致性。我们的结果可以在状态层析成像,定量波粒对偶,量子密钥分布中找到应用。

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