论文标题

从开放腔中传播单个光子:来自通用量化的描述

Propagating single photons from an open cavity: Description from universal quantization

论文作者

Saharyan, Astghik, Rousseaux, Benjamin, Kis, Zsolt, Stryzhenko, Sergiy, Guérin, Stéphane

论文摘要

在过去的几十年中,量子光学元件从早期实验中的高质量因子腔已经发展为涉及泄漏模式的新腔设计。尽管模型非常可靠,但在腔量子电动力学的概念中,光子泄漏在大部分时间都在现象学上被治疗。在这里,我们采用了不同的方法,从第一原则开始,我们定义了一个内部外观表示,该表示是从原始的真实模式表示,在该表示中可以确定有效的哈密顿量和poynting向量。与现象学模型相反,它们允许对腔中产生并在自由空间中传播的泄漏的单个光子进行完整描述。这适用于激光驱动的原子腔系统。此外,我们为单个光子生成提出了一种原子腔非共振方案,并严格分析了不同耦合方案的时间和频域中传出的单个光子。最后,我们引入了一种特定的耦合方案,以确保绝热消除,使用特定设计的驱动场信封对外向单个光子的脉冲形状量身定制。

Over the last decades, quantum optics has evolved from high quality factor cavities in the early experiments toward new cavity designs involving leaky modes. Despite very reliable models, in the concepts of cavity quantum electrodynamics, photon leakage is most of the time treated phenomenologically. Here, we take a different approach, and starting from first principles, we define an inside-outside representation which is derived from the original true-mode representation, in which one can determine effective Hamiltonian and Poynting vector. Contrary to the phenomenological model, they allow a full description of a leaking single photon produced in the cavity and propagating in free space. This is applied for a laser-driven atom-cavity system. In addition, we propose an atom-cavity non-resonant scheme for single photon generation, and we rigorously analyze the outgoing single photon in time and frequency domains for different coupling regimes. Finally, we introduce a particular coupling regime ensuring adiabatic elimination for which the pulse shape of the outgoing single photon is tailored using a specifically designed driving field envelope.

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