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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Modal analysis of a multilayer dielectric microsphere in a free-space ambient medium
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Modal analysis of a multilayer dielectric microsphere in a free-space ambient medium

机译:自由空间环境介质中多层介电微球的模态分析

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摘要

An analysis of the eigenmodes associated with a dielectric sphere embedded within one or more spherical layers of varying permittivity is presented. A matrix formulation is applied to the general multilayer problem, and the solution is validated by comparison to the complex transcendental equations derived for the homogeneous dielectric spherical resonator and a single-layer spherical dielectric resonator. Although only lossless cases are considered for simplicity, the formulation presented is applicable to resonators (with loss or gain) via the replacement of real permittivities with complex permittivities. The matrix formulation presented for the multilayer dielectric sphere follows a previously published development with the inclusion of some significant corrections. A Wronskian filter effective index approximation is developed for the estimation of Bessel functions of large order (expanding the functionality of the models to evaluation of whispering gallery modes), which is easily integrated into the presented models. Numerical simulations are generated utilizing MATLAB to solve for the complex roots of the characteristic equation, amplitude reflection coefficient, surface impedance of the dielectric layers, Q-factor, and field patterns for both TE and TM modes. Results are presented for single-layer and multilayer spherical geometries and compared to previously published results. (C) 2015 Optical Society of America
机译:提出了与嵌入一个或多个介电常数不同的球形层中的介电球相关的本征模的分析。将矩阵公式应用于一般的多层问题,并通过与为均匀介质球形谐振器和单层球形介质谐振器导出的复杂先验方程进行比较来验证该解决方案。尽管为简单起见仅考虑无损情况,但通过用复杂的介电常数代替实际的介电常数,提出的公式适用于谐振器(有损耗或增益)。为多层介电球提供的基体配方遵循先前发布的开发成果,其中包括一些重要的修正。开发了一种Wronskian滤波器有效指数近似值,用于估计大阶Bessel函数(将模型的功能扩展到耳语画廊模式的评估),可以轻松地将其集成到提出的模型中。利用MATLAB生成数值模拟,以求解TE和TM模式的特征方程的复数根,幅度反射系数,介电层的表面阻抗,Q因子和场模式。给出了单层和多层球形几何形状的结果,并与以前发表的结果进行了比较。 (C)2015年美国眼镜学会

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