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Disordered Anderson Localization Optical Fibers for Image Transport—A Review

机译:用于图像传输的无序安德森定位光纤—综述

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摘要

Disordered optical fibers show novel waveguiding properties, enabled by the transverse Anderson localization of light, and are used for image transport. The strong transverse scattering from the transversely disordered refractive index structure results in transversely confined modes that can freely propagate in the longitudinal direction. In some sense, an Anderson localization disordered fiber behave like a large-core multimode optical fiber, with the advantage that most modes are highly localized in the transverse plane, so any point in the cross section of the fiber can be used for localized beam transport. This property has been used for high-quality transportation of intensity patterns and images in these optical fibers. This review covers the basics and the history of the transverse Anderson localization in disordered optical fibers and captures the recent progress in imaging applications using these optical fibers.
机译:无序的光纤显示出新颖的波导特性,通过光的横向安德森局部化实现,并用于图像传输。来自横向无序折射率结构的强烈横向散射导致可以在纵向自由传播的横向约束模式。从某种意义上讲,安德森局域无序光纤的行为类似于大芯多模光纤,其优点是大多数模式在横向平面中高度局限,因此,光纤横截面中的任何点都可以用于局域光束传输。此特性已用于在这些光纤中高质量传输强度图案和图像。这篇综述涵盖了无序光纤中横向安德森定位的基础和历史,并捕获了使用这些光纤进行成像应用的最新进展。

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