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Interferometric method for in-situ monitoring of fiber insertion in 2D fiber connectors fabricated through Deep Proton Writing

机译:通过深度质子写入制造的2D光纤连接器中光纤插入纤维插入的干涉方法

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Deep Proton Writing (DPW) is a rapid prototyping technology allowing for the fabrication of micro-optical and micro-mechanical components in PMMA, which are compatible with low-cost replication technologies. Using DPW, a high-precision 2D fiber connector featuring conically-shaped micro-holes for easy fiber insertion, was realized. When populating these fiber connectors by fiber insertion and fixation, a critical issue is the accurate control of the fiber protrusion. The use of laser interferometry to measure the fiber's facet position with respect to the connector surface to within a few micrometers, is inconvenient in view of the measurement range as compared to the fiber dimensions. In this paper, we propose an interferometric method for in-situ monitoring of the fiber insertion depth, based on the phenomenon of low temporal coherence light interference in a Twyman - Green setup. In addition, achieving a few micrometers measurement range with low coherence light requires vertical scanning of the sample under test. The design of the experimental setup and the achieved measurement results are shown and discussed.
机译:深度质子写入(DPW)是一种快速的原型技术,允许在PMMA中制造微光学和微机械部件,其与低成本复制技术兼容。使用DPW,实现了一种具有圆锥形微孔的高精度2D光纤连接器,用于易于纤维插入纤维插入。通过光纤插入和固定填充这些光纤连接器时,临界问题是对纤维突出的准确控制。在与纤维尺寸相比,使用激光干涉测量法测量光纤的小尺寸相对于连接器表面的小尺寸位置,是不方便的。在本文中,基于TWYMAN - 绿色设置中的低时间相干光干扰的现象,提出了一种干涉测量方法,用于纤维插入深度的原位监测。此外,实现具有低相干光的几微米测量范围需要垂直扫描样品的试验。实验设置的设计和实现的测量结果显示并讨论。

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