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Digital holographic interferometric characterization of bent optical fibers

机译:弯曲光纤的数字全息干涉测量特性

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The cross-sectional refractive index distribution is the most important parameter for optical fibers. If fibers are bent, birefringence occurs and the refractive index distribution is changed, which may lead to malfunction. Thus there is great interest in the exact knowledge of this parameter. Here we describe the precise characterization of bent optical fibers by digital holographic interferometry. In a Mach-Zehnder-like arrangement, phase shifting digital holography is employed. By means of a mutual tilt of the mirrors, a carrier of controllable orientation and spatial frequency is introduced. A strategy for an evaluation of the phase shifted holograms is presented, which contains image enhancement and noise reduction steps. It is shown how different orientations of the carrier fringes relative to the fiber orientation lead to a variation of the fringes, but, in each case, to an accurate measured refractive index distribution.
机译:横截面折射率分布是光纤最重要的参数。如果光纤弯曲,则会发生双折射并改变折射率分布,这可能会导致故障。因此,对此参数的确切了解引起了极大的兴趣。在这里,我们描述了通过数字全息干涉术对弯曲光纤的精确表征。在类似马赫曾德尔的布置中,采用了相移数字全息术。通过反射镜的相互倾斜,引入了可控制的取向和空间频率的载体。提出了一种评估相移全息图的策略,其中包含图像增强和降噪步骤。示出了载体条纹相对于纤维取向的不同取向如何导致条纹的变化,但是在每种情况下导致精确测量的折射率分布。

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