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A testbed for simultaneous measurement of fiber near and far-field for the evaluation of fiber scrambling properties

机译:同时测量光纤近场和远场以评估光纤扰乱性能的测试台

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To improve our understanding of fiber scrambling properties a test bed where fiber near-field and far-field can be measured simultaneously is described. A variety of measurements has been conducted with a selection of fibers from different vendors, including state-of-the-art octagonal and hexagonal fibers. After characterization of the test bench with respect to stability and resolution, scrambling measurements have been conducted using LEDs with central wavelengths ranging between 465-635 nm. The dependence on wavelength regarding to photometrical scrambling has been initially demonstrated. Moreover, two mechanical combined fiber cables have been analyzed that were made from octagonal-circular and hexagonal-octagonal fiber sections. In this context an apparatus for focal ratio degradation (FRD) measurements was assembled to compare different shaped fibers and fiber combinations. Finally, all these preliminary investigations will help in choosing a fiber with good radial scrambling performance for the next generation fiber-link of the fiber optic coupled Cassegrain echelle spectrograph FOCES intended to be operated at the 2.0m Fraunhofer Telescope at the Wendelstein Observatory.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:为了改善我们对光纤扰的理解,描述了可以同时测量光纤近场和远场的测试床。已经通过各种来自不同供应商的纤维进行了各种测量,包括最先进的八角形和六边形纤维。在相对于稳定性和分辨率的测试台表征之后,已经使用具有中心波长的LED在465-635nm之间进行扰扰测量。最初证明了对波长关于光学旋涡的波长的依赖性。此外,已经分析了由八角形圆形和六边形八方形纤维部分制成的两个机械组合的纤维电缆。在本文中,组装了一种用于焦平劣化(FRD)测量的装置以比较不同形状的纤维和纤维组合。最后,所有这些初步调查将有助于选择具有良好径向扰动性能的纤维,用于光纤耦合CasseGrain梯度光谱仪专区的下一代光纤链路旨在在Wendelstein天文台的2.0M Fraunhofer望远镜处运行。©( 2012年)版权协会照片光学仪表工程师(SPIE)。仅供个人使用的摘要下载。

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