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Tolerancing the alignment of large-core optical fibers, fiber bundles and light guides using a Fourier approach

机译:使用傅立叶方法公差对大核光纤,纤维捆扎和光导的对准

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Optical fiber technology is found in a wide variety of applications to flexibly relay light between two points, enabling information transfer across long distances and allowing access to hard-to-reach areas. Large-core optical fibers and light guides find frequent use in illumination and spectroscopic applications, for example, endoscopy and high-resolution astronomical spectroscopy. Proper alignment is critical for maximizing throughput in optical fiber coupling systems; however, there currently are no formal approaches to tolerancing the alignment of a light-guide coupling system. Here, we propose a Fourier alignment sensitivity (FAS) algorithm to determine the optimal tolerances on the alignment of a light guide by computing the alignment sensitivity. The algorithm shows excellent agreement with both simulated and experimentally measured values and improves on the computation time of equivalent ray-tracing simulations by two orders of magnitude. We then apply FAS to tolerance and fabricate a coupling system, which is shown to meet specifications, thus validating FAS as a tolerancing technique. These results indicate that FAS is a flexible and rapid means to quantify the alignment sensitivity of a light guide, widely informing the design and tolerancing of coupling systems. (C) 2017 Optical Society of America
机译:光纤技术在各种应用中发现,以在两点之间灵活地中继光,从而能够长距离传输并允许访问难以到达的区域。大核光纤和光导频繁使用在照明和光谱应用中,例如内窥镜检查和高分辨率天文光谱。适当的对准对于最大化光纤耦合系统中的吞吐量至关重要;然而,目前没有正式方法可以容忍光导耦合系统的对准。这里,我们提出了一种傅里叶对准灵敏度(FAS)算法来通过计算对准灵敏度来确定光导的对准的最佳公差。该算法与模拟和实验测量值的良好一致,并通过两个数量级的等效光线跟踪模拟的计算时间。然后,我们将Fas应用于容忍和制造耦合系统,该耦合系统显示为满足规格,从而验证FAS作为公差技术。这些结果表明,FAS是一种灵活且快速的方法,用于量化光导的对准灵敏度,广泛地通知耦合系统的设计和公差。 (c)2017年光学学会

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