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Experimental and theoretical investigations of birefringent holey fibers with a triple defect

机译:具有三重缺陷的双折射多孔光纤的实验和理论研究

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摘要

We have manufactured and characterized a birefringent holey fiber of a new construction. The birefringence in this fiber is induced by the highly elliptical shape of the core, which consists of a triple defect in a hexagonal structure. Using a hybrid edge-nodal finite-element method, we calculated the spectral dependence of phase and group modal birefringence for spatial modes E_(11) and E_(21) in idealized and in real fiber, whose geometry we determined by using a scanning-electron microscope. Results of our calculations show that technological imperfections significantly affect the fiber's birefringence. Normalized cutoff wavelengths for higher-order modes relative to the filling factor were also determined for the idealized structure. We observed a significant disagreement between theoretical and experimental values of cutoff wavelengths, which was attributed to high confinement losses near the cutoff condition. We also measured the spectral dependence of the phase and the group modal birefringence for spatial modes E_(11) and E_(21). The measured parameters showed good agreement with the results of modeling.
机译:我们已经制造并表征了一种新型双折射多孔光纤。这种光纤中的双折射是由纤芯的高度椭圆形引起的,纤芯由六边形结构中的三重缺陷组成。使用混合边缘节点有限元方法,我们计算了理想化光纤和实际光纤中空间模式E_(11)和E_(21)的相位和群模态双折射的光谱相关性,我们使用扫描电子显微镜。我们的计算结果表明,技术缺陷会严重影响光纤的双折射。还针对理想化结构确定了相对于填充因子的高阶模态的归一化截止波长。我们观察到截止波长的理论值与实验值之间存在显着分歧,这是由于在截止条件附近存在较高的限制损耗。我们还测量了空间模式E_(11)和E_(21)的相位光谱依赖性和群模态双折射。实测参数与建模结果吻合良好。

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