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多拷贝量子位用于单光子态。

Multi-copy quantifiers for single-photon states.

机构信息

Department of Optics, Faculty of Science, Palacký University, 17, listopadu 1192/12, 771 46, Olomouc, Czech Republic.

出版信息

Sci Rep. 2017 May 3;7(1):1484. doi: 10.1038/s41598-017-01333-y.

Abstract

Single-photon states are basic resources for hybrid quantum technology with non-Gaussian states of light. Accelerating quantum technology is already able to produce high-quality single-photon states. These states can be used for hybrid quantum information processing, based on a nonclassical phase-space interference represented by negativity of a Wigner function. Therefore, new quantifiers, capable of evaluating such high-quality single-photon states, are required. We propose and analyze quantifiers which process multiple estimates of single-photon state's statistics. The quantifiers simulate basic capability of single photons to conditionally bunch into a single mode and form a Fock state. This state exhibits complex nonclassical phase-space interference effects making its Wigner function negative in multiple areas. The quantifiers directly evaluate a presence of the multiple negativities corresponding to the Fock state. We verify applicability of the quantifiers by using them to single-photon states from recent experiments. The quantifiers can be further extended to also test indistinguishability of single-photon states. It allows to verify quantum interference of light from single-photon emitters more sensitively than in the traditional Hong-Ou-Mandel test. Besides quantum optics, the multi-copy quantifiers can be also applied to experiments with atomic memories and mechanical oscillators.

摘要

单光子态是混合量子技术的基本资源,具有非高斯态的光。加速量子技术已经能够产生高质量的单光子态。这些状态可用于混合量子信息处理,基于由威格纳函数的负性表示的非经典相空间干涉。因此,需要新的能够评估这种高质量单光子态的量子数。我们提出并分析了处理单光子态统计多个估计的量子数。这些量子数模拟了单光子的基本能力,能够条件性地聚束到一个单模中,并形成一个福克态。这种状态表现出复杂的非经典相空间干涉效应,使得其威格纳函数在多个区域为负。量子数直接评估与福克态相对应的多个负值的存在。我们通过使用它们来处理最近实验中的单光子态来验证量子数的适用性。这些量子数可以进一步扩展,以测试单光子态的不可分辨性。它允许比传统的洪-欧-曼德尔测试更灵敏地验证单光子发射器的量子干涉。除了量子光学之外,多拷贝量子数也可以应用于原子存储器和机械振荡器的实验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ece/5431150/5941f7fc782a/41598_2017_1333_Fig1_HTML.jpg

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