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Technique and Apparatus for Accurate Cross-Sectional Stress Profiling of Optical Fibers

机译:光纤的精确截面应力分析技术和设备

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The design and performance of a technique for determining 2-D cross-sectional stress distributions in optical fibers and fiber-based devices is described. The Brace-Köhler phase compensation method is implemented on a commercial polarization microscope to perform full-field measurements of the transverse retardations induced by the low levels of birefringence in optical fibers. Analysis of the region surrounding the fiber enables removal of the background retardation induced by the imaging optics. A custom microscope stage plate, fiber rotation apparatus, and compensator rotation apparatus allow for semi-automated measurements at various angular orientations of the fiber. Image analysis techniques are described that reduce the number of angular increments over which the compensator must be rotated, thus providing a more workable total data acquisition time. Computed tomography principles and the filtered backprojection algorithm are implemented to determine full cross-sectional axial stress distributions. The lateral spatial resolution of the technique is 0.46 $muhbox{m}$ . The axial stress distribution in Corning SMF-28 fiber is presented. The resolution of the axial stress determined with the technique is estimated to be 0.24 MPa. The accuracy of the axial stress is estimated to be $pm$0.18 MPa.
机译:描述了确定光纤和基于光纤的设备中二维横截面应力分布的技术的设计和性能。 Brace-Köhler相位补偿方法是在商用偏振显微镜上执行的,用于对光纤中低双折射引起的横向延迟进行全场测量。对纤维周围区域的分析使得能够消除由成像光学器件引起的背景延迟。定制的显微镜载物台板,光纤旋转设备和补偿器旋转设备允许在光纤的各种角度方向上进行半自动测量。描述了图像分析技术,该技术减少了补偿器必须旋转的角度增量的数量,从而提供了更可行的总数据采集时间。执行计算机断层扫描原理和滤波反投影算法来确定整个横截面的轴向应力分布。该技术的横向空间分辨率为0.46 $ muhbox {m} $。给出了康宁SMF-28纤维的轴向应力分布。用该技术确定的轴向应力分辨率估计为0.24 MPa。轴向应力的精度估计为$ pm $ 0.18 MPa。

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