Strong Coupling and Single-Photon Nonlinearity in Free-Electron Quantum Optics

IF 6.5 1区 物理与天体物理 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Aviv Karnieli, Charles Roques-Carmes, Nicholas Rivera, Shanhui Fan
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引用次数: 0

Abstract

A central challenge in the emerging field of free-electron quantum optics is to achieve strong quantum interaction and single-photon nonlinearity between a flying free electron and a photonic mode. Existing schemes are intrinsically limited by electron diffraction, which puts an upper bound on the interaction length and, therefore, on the strength of quantum coupling and nonlinearity. Here, we propose “free-electron fibers”: effectively one-dimensional photonic systems where free electrons copropagate with two guided modes. The first mode applies a ponderomotive trap to the free electron, removing the limitations due to electron diffraction. The second mode strongly couples to the guided free electron with an enhanced coupling that is orders of magnitude larger than previous designs. The extended interaction lengths enabled by our scheme allow for strong single-photon nonlinearities mediated by free electrons. We predict novel quantum effects in our system such as deterministic single-photon emission and nonlinear multimode dynamics. Our proposal paves the way toward the realization of heralded macroscopic nonclassical light generation, deterministic single-photon sources, and quantum gates controlled by free-electron–photon interactions.

Abstract Image

自由电子量子光学中的强耦合和单光子非线性
自由电子量子光学这一新兴领域的核心挑战是实现飞行自由电子与光子模式之间的强量子相互作用和单光子非线性。现有方案在本质上受到电子衍射的限制,这对相互作用的长度以及量子耦合和非线性的强度设置了上限。在这里,我们提出了 "自由电子光纤":这是一种有效的一维光子系统,其中自由电子与两个导波模式共同传播。第一种模式对自由电子施以思索动力陷阱,消除了电子衍射造成的限制。第二种模式与被引导的自由电子强耦合,其增强耦合比以前的设计大几个数量级。我们的方案延长了相互作用的长度,从而实现了由自由电子介导的强单光子非线性。我们预测我们的系统会产生新的量子效应,如确定性单光子发射和非线性多模动力学。我们的建议为实现预示性宏观非经典光生成、确定性单光子源以及由自由电子-光子相互作用控制的量子门铺平了道路。
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来源期刊
ACS Photonics
ACS Photonics NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
11.90
自引率
5.70%
发文量
438
审稿时长
2.3 months
期刊介绍: Published as soon as accepted and summarized in monthly issues, ACS Photonics will publish Research Articles, Letters, Perspectives, and Reviews, to encompass the full scope of published research in this field.
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