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首页> 外文期刊>SIAM Journal on Applied Mathematics >A DIFFUSION ANALYSIS APPROACH TO TE MODE PROPAGATION IN RANDOMLY PERTURBED OPTICAL WAVEGUIDES
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A DIFFUSION ANALYSIS APPROACH TO TE MODE PROPAGATION IN RANDOMLY PERTURBED OPTICAL WAVEGUIDES

机译:随机摄动光波导中TE模式传播的扩散分析方法

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The aim of this work is to model the evolution of the modal distribution of the electromagnetic field as it propagates along a randomly deformed multimode optical waveguide. When the number of guided modes becomes large we can regard the discrete set of modes as a quasi continuum. In some cases, nearest neighbor coupling predominates over other power transfer mechanisms and the coupling process can be ideally described in terms of a diffusion equation. The theory is applied to the propagation of guided transverse electric (TE) field waves in a slab waveguide with parabolic refractive index profile. Numerical simulations are in good agreement with theoretical results, and the error is shown to behave as the inverse of the number of guided modes. The technique allows the prediction of the long-distance modal distribution for a very large number of guided modes within fixed computational resources.
机译:这项工作的目的是模拟电磁场沿随机变形的多模光波导传播时模态分布的演变。当引导模式的数量变大时,我们可以将离散模式集视为准连续体。在某些情况下,最接近的邻居耦合优于其他功率传输机制,并且可以根据扩散方程来理想地描述耦合过程。该理论被应用于具有抛物线折射率分布的平板波导中的导引横向电场(TE)的传播。数值模拟与理论结果吻合良好,并且误差表现为导模数的倒数。该技术允许在固定计算资源内针对大量引导模式预测长距离模态分布。

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