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Wave function formalism in quantum optics and generalized Huygens-Fresnel principle for N-photon states: derivation and applications

机译:量子光学中的波函数形式论和N-光子态的广义惠更斯-菲涅耳原理:推导和应用

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Few-photon systems are best described by their wave function rather than by the usual quantum field formalism. In this work, we develop a photon wave function (PWF) formalism suitable for analyzing a wide variety of quantum optical problems related to propagation, diffraction and imaging with quantum states of light. We establish a generalized Huygens-Fresnel (GH-F) principle that describes the propagation of any paraxial N-photon state. This tool is very helpful for predicting photo-detection correlations in space and time due to an initial N-particle entanglement, even in complex situation. The effect of lenses, beam splitters, filters ... on the photon paths can be easily taken into account. We apply the PWF formalism and the GH-F principle to three specific problems in quantum optics. First, we revisit the Hong-Ou-Mandel two-photon interference effect and analyze the effect of photon shape mismatch in space, time and polarization using the PWF formalism. Second, we show how to use the GH-F principle to analyze "ghost" imaging and diffraction experiments with entangled photon pairs such as those realized by Strekalov et al. [Phys. Rev. Lett. 74, 3600 (1995)] and Pittman et al. [Phys. Rev. A 52, R3429 (1995)] in the nineties. Finally, we use the GH-F principle to analyze the resolution enhancement in a recent quantum imaging proposal based on TV incoherent single-photon sources [Phys. Rev. Lett. 99, 133603 (2007) and Phys. Rev. A 80, 013820 (2009)].
机译:很少有光子系统最好用其波函数来描述,而不是用通常的量子场形式主义来描述。在这项工作中,我们开发了一种光子波函数(PWF)形式,适用于分析与光的量子态的传播,衍射和成像有关的各种量子光学问题。我们建立了广义的惠更斯-菲涅耳(GH-F)原理,该原理描述了任何傍轴N光子状态的传播。即使在复杂的情况下,该工具对于预测由于初始N粒子缠结而在空间和时间上的光检测相关性也非常有用。可以很容易地考虑到透镜,分束器,滤光片……在光子路径上的作用。我们将PWF形式主义和GH-F原理应用于量子光学中的三个特定问题。首先,我们回顾一下洪-欧-曼德尔双光子干涉效应,并使用PWF形式论分析光子形状在空间,时间和极化方面的失配效应。其次,我们展示了如何使用GH-F原理分析纠缠光子对(例如由Strekalov等人实现的那些)的“重影”成像和衍射实验。 [物理莱特牧师74,3600(1995)]和Pittman等人。 [物理修订版A 52,R3429(1995)]。最后,我们使用GH-F原理来分析基于TV非相干单光子源的最新量子成像方案中的分辨率增强[Phys。莱特牧师99,133603(2007)和Phys。 Rev.A 80,013820(2009)]。

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