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The impact of fiber fusion splicing on the focal ratio degradation and transmission of LAMOST fiber system

机译:光纤熔接对LAMOST光纤系统焦比降低和传输的影响

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We report results of the impact of fiber fusion splicing on Focal Ratio Degradation (FRD) and transmission loss of LargeSky Area Multi-Object Fiber Spectroscopic Telescope (LAMOST) fiber system. We test at f/5 input f-ratio conditions,the influence of fiber fusion splicing on FRD and transmission respectively in the laboratory. A precision test system wasdesigned to reduce the system error and human error. The measurement accuracy of the system reaches micron scale.The fiber end surface was prepared by large core fiber cutter, grinder and fusion splicing workstation. The fiber surfaceroughness is less than 1 micron and the surface angle is less than 0.5°. By optimize the cutting and polish process,adjusted the fusion parameters, a satisfactory results of optical fiber fusion obtained in the laboratory. The maximumtransmission increase caused by the fiber fusion is less than 3%, average value is about 1%; while the maximum FRDincrease is about 0.12°. We repaired 14 damaged optical fibers of LAMOST fiber system by use fiber fusion method,and the average peak light intensity of the repaired fiber reaches more than 90% of the peak light intensity of the normaluse fiber in action. Our results indicate that fiber fusion technology can be adopted for repair failure optical fiber, replacethe fiber clips and astronomical instrument construction.
机译:我们报告了光纤熔接对焦比降低(FRD)和大传输损耗的影响的结果 天空区域多目标光纤光谱望远镜(LAMOST)光纤系统。我们在f / 5输入的f比条件下进行测试, 在实验室中,光纤熔接分别对FRD和传输的影响。精密测试系统是 旨在减少系统错误和人为错误。系统的测量精度达到微米级。 纤维端面是通过大型纤芯切割机,研磨机和熔接工作站制备的。纤维表面 粗糙度小于1微米,表面角度小于0.5°。通过优化切割和抛光工艺, 调整了融合参数,在实验室获得了令人满意的光纤融合结果。最大值 纤维熔合引起的传输增加小于3%,平均值约为1%;而最大FRD 增量约为0.12°。通过光纤融合法修复了LAMOST光纤系统的14根受损光纤, 修复后的光纤的平均峰值光强度达到正常光纤峰值光强度的90%以上 在行动中使用纤维。我们的结果表明,可以采用光纤熔合技术修复失效的光纤,代替 光纤夹和天文仪器的构造。

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