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Numerical solution of strongly guided modes propagating in sapphire crystal fibers (α-Al 2O 3) for UV, VIS/IR wave-guiding

机译:蓝宝石晶体纤维中繁殖模式的数值解(α-Al 2 O 3 )对于UV,VIS / IR波浪引导

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A numerical solution, using the general formulation of the transcendental equation and eigenmode values, is proposed to demonstrate number of strongly guided modes propagating in sapphire crystal fibers (SCF). The SCF is considered to have hexagonal geometry of a single crystal and multimode step-index profile. Several distinguished characteristics are naturally embedded in SCF compared to other ordinary optical fibers. The eigenmodes of the SCF are numerically determined and are a combination of transverse electric, transverse magnetic, and hybrid modes. The numerical solution for wave-guiding in ultra-violet (UV), visible infrared (VIS/IR) spectrum, is investigated by the number of modal propagation under strongly guided approximation. The cross-sectional energy distribution of fundamental mode (FM) and higher order modes (HoM) describe the variation of the effective mode index with respect to the change in the core radius. The proposed waveguide is of ~35micron radius, exhibit ?0.077?dB/m confinement loss at 200?nm. The simulations in this study are performed by the COMSOL multi-physics? software.
机译:提出了使用超恒定方程和特征模值的一般制剂的数值解决方案,以演示在蓝宝石晶纤维(SCF)中传播的强导向模式的数量。 SCF被认为是单晶和多模步骤指数曲线的六边形几何形状。与其他普通光纤相比,在SCF中自然嵌入了几种杰出特征。在数值上确定SCF的特征模点,是横向电动,横向磁和混合模式的组合。通过强烈导出近似下的模态传播的数量来研究用于紫外(UV),可见红外(VIS / IR)光谱的波浪引导的数值溶液。基本模式(FM)和高阶模式(HOM)的横截面能量分布描述了关于核心半径变化的有效模式索引的变化。所提出的波导是〜35米的半径,表现出?0.077?DB / M限制损失200?NM。本研究中的模拟由COMSOL多物理进行?软件。

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