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Finding Taylor expansion of dispersion curve for arbitrarily indexed optical fibers by hyper-perturbation theory

机译:利用超扰动理论求出任意分度光纤的色散曲线的泰勒展开

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After a conventional finite-element analysis for the propagation constants of guided modes in arbitrarily indexed optical fibers, a hyper-perturbation approach is proposed to determine the derivatives of propagation constants up to very high orders directly from the modal solutions. By considering the differentiation of the variational reaction formula, the approach develops a systematic algorithm to find higher order derivatives of the propagation constant and the modal solution from their lower order derivatives. The method involves numerical integration and requires only one eigenvalue evaluation, resulting in higher accuracy with less computational effort. Based on this approach, the explicit Taylor expansion formulas of the dispersion relation for step and parabolic-index optical fibers are presented.
机译:在对任意折射率的光纤中的导模的传播常数进行常规的有限元分析之后,提出了一种超扰动方法,可以直接从模态解中确定高达非常高阶的传播常数的导数。通过考虑变分反应公式的微分,该方法开发了一种系统算法,以从它们的低阶导数中找到传播常数和模态解的高阶导数。该方法涉及数值积分,只需要一个特征值评估,就可以以更少的计算量获得更高的精度。基于这种方法,给出了阶跃光纤和抛物线折射率光纤色散关系的显式泰勒展开公式。

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