论文标题

介电介质中光子脉冲的时空传播,带有光束拆分器的插图

Space-time propagation of photon pulses in dielectric media,illustrations with beam splitters

论文作者

Federico, M., Dorier, V., Guérin, S., Jauslin, H. R.

论文摘要

光子是电磁场的基本量子激发。量化通常是根据平面波的形式基于本征模的扩展构建的。由于它们形成基础,因此可以通过线性组合构建其他电磁构型。在本演讲中,我们讨论了一种在玻色石空间的一般形式主义中构建的公式,其中量子激发可以直接在任意形状的局部脉冲上构建。尽管这两个配方本质上是等效的,但脉冲方面的直接表述具有一些概念性和实用的优势,我们用一些例子说明了这一点。第一个是单个光子脉冲通过梁分离器的通过。从Fock空间中的脉冲方面对这种表述的分析表明,不需要像文献中那样引入“通过未使用端口进入的真空波动”。另一个例子是Hong-ou-mandel效应。它被描述为在Fock空间中的Schrödinger表示中的时间依赖过程。该分析明确表明,洪 - 曼德尔效应的两种基本要素是脉冲的相同形状和光子的骨质性质。该公式表明,所有涉及线性量子光学设备的现象都可以根据相应的经典麦克斯韦方程的时间依赖性解决方案来描述和计算脉冲的时间,从中可以立即构建FOCK空间中的量子动力学。

Photons are the elementary quantum excitations of the electromagnetic field. Quantization is usually constructed on the basis of an expansion in eigenmodes, in the form of plane waves. Since they form a basis, other electromagnetic configurations can be constructed by linear combinations. In this presentation we discuss a formulation constructed in the general formalism of bosonic Fock space, in which the quantum excitation can be constructed directly on localized pulses of arbitrary shape. Although the two formulations are essentially equivalent, the direct formulation in terms of pulses has some conceptual and practical advantages, which we illustrate with some examples. The first one is the passage of a single photon pulse through a beam splitter. The analysis of this formulation in terms of pulses in Fock space shows that there is no need to introduce "vacuum fluctuations entering through the unused port", as is often done in the literature. Another example is the Hong-Ou-Mandel effect. It is described as a time dependent process in the Schrödinger representation in Fock space. The analysis shows explicitly how the two essential ingredients of the Hong-Ou-Mandel effect are the same shape of the pulses and the bosonic nature of photons. This formulation shows that all the phenomena involving linear quantum optical devices can be described and calculated on the basis of the time dependent solution of the corresponding classical Maxwell's equations for pulses, from which the quantum dynamics in Fock space can be immediately constructed.

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