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一维波导中单个光子波包诱导的非马尔可夫性

Non-Markovianity induced by a single-photon wave packet in a one-dimensional waveguide.

作者信息

Valente D, Arruda M F Z, Werlang T

出版信息

Opt Lett. 2016 Jul 1;41(13):3126-9. doi: 10.1364/OL.41.003126.

Abstract

The concept of non-Markovianity (NM) in quantum dynamics is still an open debate. Understanding how to generate and measure NM in specific models may aid in this quest. In quantum optics, an engineered electromagnetic environment coupled to a single atom can induce NM. The most common scenario of structured electromagnetic environment is an optical cavity, composed by a pair of mirrors. Here, we show how to generate and measure NM on a two-level system coupled to a one-dimensional waveguide with no mirrors required. The origin of the non-Markovian behavior lies in the initial state of the field, prepared as a single-photon packet. NM is shown to depend on two experimentally controllable parameters, namely, the linewidth of the packet and its central frequency. We relate the presence of NM to quantum interference. We also show how the two output channels of the waveguide provide distinct signatures of NM, both experimentally accessible.

摘要

量子动力学中的非马尔可夫性(NM)概念仍然是一个有待探讨的问题。了解如何在特定模型中产生和测量非马尔可夫性可能有助于解决这一问题。在量子光学中,与单个原子耦合的人工电磁环境可以诱导非马尔可夫性。结构化电磁环境最常见的情况是由一对镜子组成的光学腔。在这里,我们展示了如何在与一维波导耦合的两能级系统上产生和测量非马尔可夫性,无需镜子。非马尔可夫行为的起源在于作为单光子包制备的场的初始状态。结果表明,非马尔可夫性取决于两个实验可控参数,即包的线宽及其中心频率。我们将非马尔可夫性的存在与量子干涉联系起来。我们还展示了波导的两个输出通道如何提供非马尔可夫性的不同特征,这两者在实验中都是可获取的。

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