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Analysis of the dependence of the guided mode field distribution on the silica bridges in hollow-core Bragg fibers

机译:波导模场分布对空心布拉格光纤中二氧化硅桥的依赖性分析

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The guiding properties of fabricated air-silica Bragg fibers with different geometric characteristics have been numerically investigated through a modal solver based on the finite element method. The method has been used to compute the dispersion curves, the loss spectra and the field distribution of the modes sustained by the Bragg fibers under investigation. In particular, the silica bridge influence on the fundamental mode has been analyzed, by considering structures with different cross sections, that is an ideal Bragg fiber, without the silica nonosupports, a squared air-hole one and, finally, a rounded air-hole one, which better describes the real fiber transverse section. Results have shown the presence of anti-crossing points in the effective index curves associated with the transition of the guided mode to a surface mode. Moreover, it has been verified that these surface modes are responsible of the loss peaks in the fiber transmission spectra, also experimentally measured. Surface modes are mainly localized in the regions of the cladding where the bridge supports join the cladding rings, forming silica islands where the field can focuses.
机译:通过基于有限元方法的模态求解器,对具有不同几何特性的空气二氧化硅布拉格编织纤维的导引性能进行了数值研究。该方法已用于计算所研究的布拉格纤维所维持的模的色散曲线,损耗谱和场分布。特别是,通过考虑具有不同横截面的结构,分析了硅桥对基本模的影响,这是理想的布拉格纤维,无硅非支撑物,有一个方形的气孔,最后是一个圆形的气孔。一,可以更好地描述真实的纤维横截面。结果表明,在有效指数曲线中存在反交叉点,这些指数与引导模式向表面模式的过渡相关。此外,已证实这些表面模式是光纤传输光谱中损耗峰值的原因,也是通过实验测量的。表面模式主要局限在包层中桥支撑与包层环相连的区域,从而形成了可以集中磁场的二氧化硅岛。

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