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Propagation of light trapped within a set of lowest-order modes of graded-index multimode fiber undergoing bending

机译:在一组最低阶的渐变折射率多模光纤中发生弯曲时捕获的光的传播

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摘要

We describe experimental results and a theoretical analysis for propagation in graded-index multimode fiber when diode laser light is launched into the lowest-order propagation modes and the fiber undergoes severe bending perturbations. Experimentally, near-field modal interference images and transmission loss measurements were obtained for different loop diameters. The data indicate that, when the fundamental mode is excited, the light remains in lowest-order modes even for small bend diameters. This is consistent with analysis which predicts that, in a parabolic-index multimode fiber subject to constant diameter bending, the light tends to oscillate between lowest-order modes and remains trapped therein rather than diffusing to high-order modes. Implications of these results for an intrusion-resistant communication system with graded-index multimode fiber are discussed.
机译:我们描述了当二极管激光发射到最低阶传播模式并且光纤遭受严重弯曲扰动时在渐变折射率多模光纤中传播的实验结果和理论分析。实验上,获得了不同环路直径的近场模态干扰图像和传输损耗测量值。数据表明,当激发基本模式时,即使对于较小的弯曲直径,光仍保持最低阶模式。这与分析的预测相一致,该分析预测,在经受恒定直径弯曲的抛物线折射率多模光纤中,光趋于在最低阶模之间振荡并保持被困在其中,而不是扩散到高阶模。讨论了这些结果对具有渐变折射率多模光纤的抗入侵通信系统的影响。

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