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基于有源光纤涡旋场中光子 - 电子相互作用的轨道角动量荧光发射

Orbital-angular-momentum fluorescence emission based on photon-electron interaction in a vortex field of an active optical fiber.

作者信息

Wu Yan, Wen Jianxiang, Tang Fengzai, Pang Fufei, Guo Hairun, Huang Sujuan, Wang Tingyun

机构信息

Key Laboratory of Specialty Fiber Optics and Optical Access Networks, Joint International Research Laboratory of Specialty Fiber Optics and Advanced Communication, Shanghai Institute for Advanced Communication and Data Science, Shanghai University, Shanghai 200444, China.

WMG, University of Warwick, Coventry, CV4 7AL, UK.

出版信息

Nanophotonics. 2022 Dec 16;12(1):43-53. doi: 10.1515/nanoph-2022-0466. eCollection 2023 Jan.

Abstract

We develop a model of interaction between photons and electrons in an active vortex field, which can generate a fluorescence spectrum with the characteristics of orbital angular momentum (OAM). In an active optical fiber, our findings generalize the notion of photon-electron interaction and point to a new kind of OAM-mode broad-spectrum light source, which could be interpreted in two processes: one microscopically is the excitation of OAM-carrying photons based on the photon-electron interaction; the other macroscopically is the emission and transmission of a donut-shaped fluorescence in a vortex field with a spiral phase wavefront in a ring-core active fiber. Here we present a straightforward experimental method that the emission of broad-spectrum fluorescence with an OAM feature is actualized and validated in a ring-core erbium-doped fiber. The spectrum has a broad spectral width up to 50 nm. Furthermore, four wavelengths are extracted from the fluorescence spectrum and superimposed with their corresponding Gaussian beams, from which the spiral-shaped interferograms of OAM modes in a broad spectrum are identified with high purity. The application of the OAM-based fluorescence light source may range from classical to quantum information technologies, and enable high-capacity communication, high-sensitivity sensing, high-resolution fluorescence imaging, etc.

摘要

我们建立了一个在有源涡旋场中光子与电子相互作用的模型,该模型能够产生具有轨道角动量(OAM)特性的荧光光谱。在有源光纤中,我们的研究结果推广了光子 - 电子相互作用的概念,并指出了一种新型的OAM模式广谱光源,这可以通过两个过程来解释:微观上是基于光子 - 电子相互作用激发携带OAM的光子;宏观上是在环形纤芯有源光纤中具有螺旋相位波前的涡旋场中发射和传输环形荧光。在此,我们提出一种直接的实验方法,即在环形纤芯掺铒光纤中实现并验证了具有OAM特征的广谱荧光发射。该光谱具有高达50nm的宽光谱宽度。此外,从荧光光谱中提取了四个波长,并与它们相应的高斯光束叠加,从中以高纯度识别出广谱中OAM模式的螺旋形干涉图。基于OAM的荧光光源的应用范围可能从经典信息技术到量子信息技术,并能够实现高容量通信、高灵敏度传感、高分辨率荧光成像等。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b0d/11501820/45fc4ed568db/j_nanoph-2022-0466_fig_001.jpg

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