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Measuring the Modal Content of Large-Mode-Area Fibers

机译:测量大模场光纤的模态含量

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摘要

Spatially and spectrally resolved imaging of mode content in fibers, or more simply, S $^2$ imaging, is a new measurement technique for analyzing the mode content of large-mode-area (LMA) fibers. It works by spatially resolving the spectral interference that occurs when light in a few-mode fibers scatters into different modes that then propagate with different group delays. A scanning spatial filter in the form of a single-mode fiber probe coupled to an optical spectrum analyzer is utilized to provide both spatial and spectral resolution, and the data are analyzed via the Fourier transform of the optical spectrum. The wealth of data allows for imaging multiple modes simultaneously propagating in the fiber under test as well as quantifying their relative power levels. In addition, the ability to analyze mode images as a function of modal group delay allows distinguishing between discrete scattering at fiber surfaces and distributed scattering that occurs along the length of the LMA fiber. The all-fiber nature of the setup makes the measurement sufficiently stable to measure phase images of the higher order modes (HOMs). Because the method is interferometrically based, even very weak HOMs can be detected.
机译:光纤中模态含量的空间和光谱分辨成像,或更简单地说,S $ ^ 2 $成像,是一种用于分析大模场(LMA)光纤的模态含量的新测量技术。它通过在空间上解决少数模光纤中的光散射为不同的模然后以不同的群延迟传播的光谱干扰来工作。利用耦合到光谱分析仪的单模光纤探针形式的扫描空间滤波器来提供空间和光谱分辨率,并通过光谱的傅立叶变换来分析数据。丰富的数据允许对同时在被测光纤中传播的多种模式进行成像,以及量化其相对功率水平。此外,根据模态群时延分析模态图像的能力可以区分光纤表面的离散散射和沿LMA光纤长度发生的分布式散射。设置的全光纤特性使测量足够稳定,可以测量高阶模(HOM)的相位图像。由于该方法基于干涉测量,因此甚至可以检测到非常弱的HOM。

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