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Finite element analysis on stress-induced birefringence of polarization-maintaining optical fiber

机译:保偏光纤应力诱发双折射的有限元分析

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摘要

Influence of thermal-mechanical properties on the features of the panda polarization-maintaining optical fiber (PMF) in fabrication process is studied in detail by finite element method (FEM). The stress birefringence is 2.13443x10~(-4) obtained by the static analysis and 2.1269x10~(-4) by dynamic analysis. The difference in simulation by two methods is around 0.4%. The non-uniformity of stress birefringence in the fiber core is about 1.6%. Predicted results demonstrate that effect of the thermal conductive parameter on fiber thermal stress dominates. The high and uniform stress birefringence in the fiber core is obtained by appropriately selecting suitable stress region area and position.
机译:通过有限元方法(FEM)详细研究了热机械性能对熊猫保偏光纤(PMF)特性的影响。通过静态分析获得的应力双折射为2.13443x10〜(-4),通过动态分析获得的应力双折射为2.1269x10〜(-4)。两种方法在模拟上的差异约为0.4%。纤维芯中应力双折射的不均匀性约为1.6%。预测结果表明,导热参数对纤维热应力的影响占主导地位。通过适当选择合适的应力区域面积和位置,可以获得纤维芯中的高且均匀的应力双折射。

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