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A modal impedance-angle formalism: Schemes for accurate graded-index bent-slab calculations and optical fiber mode counting

机译:模态阻抗角形式:精确的渐变折射率弯板计算和光纤模式计数的方案

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The propagation coefficients of guided modes along bent slabs and optical fibers may be calculated with the aid of a complex-power-flow, variational scheme. This scheme can be cast in the form of a Newton iterative scheme for a characteristic equation in terms of impedances rather than fields. Singularities of the associated Riccati equations for the impedances are circumvented via a generalized coordinate transformation, involving an angle for bent slabs, or a matrix of angles for optical fibers. Adopting the resulting impedance-angle formalism for bent slabs, numerical difficulties disappear, and accuracy ensues. The analysis of the vectorial optical-fiber problem benefits from its scalar bent-slab counterpart. In particular, the connection between the power flow and the impedance-angle formalism forms the physical underpinning for understanding that beyond a certain distance from the fiber core the derivative of the impedance matrix with respect to the propagation coefficient is positive definite. In turn, this provides the basis for the full-wave generalization for optical fibers of the mode-counting scheme developed in 1975 by Kuester and Chang for scalar wave propagation along a straight slab. With these key results, root-finding can be rendered more robust and efficient. A companion paper contains the necessary proofs for the complex-power-flow variational scheme and the mode-counting and mode-bracketing theorems.
机译:可以借助于复杂的潮流变化方案来计算导模沿着弯曲平板和光纤的传播系数。该方案可以以牛顿迭代方案的形式针对阻抗而不是场的特性方程式进行浇铸。通过广义坐标变换来规避阻抗相关联的Riccati方程的奇异性,该坐标变换涉及弯曲平板的角度或光纤角度矩阵。对弯曲的平板采用最终的阻抗角形式,数值困难消失,随之而来的是精度。矢量光纤问题的分析得益于其标量弯曲平板坯。特别地,功率流与阻抗角度形式之间的联系形成了物理基础,以理解在距光纤纤芯一定距离之外,阻抗矩阵相对于传播系数的导数是正定的。反过来,这也为1975年由Kuester和Chang开发的模计数方案中的光纤沿波在平面平板上传播提供了基础。有了这些关键结果,寻根可以变得更加强大和高效。随附的论文包含复潮流潮流方案,模数定理和模态定理的必要证明。

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