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利用数字全息术的偏振显微镜:在光纤双折射测量中的应用。

Polarization microscopy by use of digital holography: application to optical-fiber birefringence measurements.

作者信息

Colomb Tristan, Dürr Florian, Cuche Etienne, Marquet Pierre, Limberger Hans G, Salathé René-Paul, Depeursinge Christian

机构信息

Imaging and Applied Optics Institute, Ecole Polytechnique Fédérale de Lausanne, Switzerland.

出版信息

Appl Opt. 2005 Jul 20;44(21):4461-9. doi: 10.1364/ao.44.004461.

Abstract

We present a digital holographic microscope that permits one to image polarization state. This technique results from the coupling of digital holographic microscopy and polarization digital holography. The interference between two orthogonally polarized reference waves and the wave transmitted by a microscopic sample, magnified by a microscope objective, is recorded on a CCD camera. The off-axis geometry permits one to reconstruct separately from this single hologram two wavefronts that are used to image the object-wave Jones vector. We applied this technique to image the birefringence of a bent fiber. To evaluate the precision of the phase-difference measurement, the birefringence induced by internal stress in an optical fiber is measured and compared to the birefringence profile captured by a standard method, which had been developed to obtain high-resolution birefringence profiles of optical fibers.

摘要

我们展示了一种能够对偏振态进行成像的数字全息显微镜。该技术是数字全息显微镜与偏振数字全息术相结合的产物。两个正交偏振参考波与经显微镜物镜放大的微观样品透射波之间的干涉,被记录在电荷耦合器件(CCD)相机上。离轴几何结构允许从这单个全息图中分别重建两个波前,用于对物波琼斯矢量进行成像。我们将该技术应用于对弯曲光纤的双折射进行成像。为评估相位差测量的精度,对光纤内部应力引起的双折射进行了测量,并与通过一种标准方法捕获的双折射轮廓进行比较,该标准方法是为获取光纤的高分辨率双折射轮廓而开发的。

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