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Graded index optical microresonators: analytical and numerical analyses

机译:渐变折射率光学微谐振器:分析和数值分析

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摘要

It is known that the spectra of optical modes supported by microresonators are shape and size dependent. We have introduced an additional parameter, i.e., spatially varying refractive index, to tailor the spectra of optical modes in a microdisk resonator while keeping size and shape intact. A new class of whispering gallery mode microresonators, referred to as graded index (GRIN) microresonators, is proposed. The GRIN profile belongs to a special inhomogeneous medium known as Maxwell’s fish eye. The modal analysis of the structure is investigated both analytically and numerically. Solution of the Helmholtz equation is attempted under the spatially varying refractive index scenario and numerical verification of the analytical findings is tested by the finite-difference timedomain method. It is found that the two approaches support each other. It is expected that the findings of the GRIN microresonator may open up new research and device opportunities in photonics.
机译:已知由微谐振器支持的光学模式的光谱是形状和尺寸相关的。我们引入了一个附加参数,即空间变化的折射率,以在保持尺寸和形状不变的同时调整微盘谐振器中光学模式的光谱。提出了一种新的回音壁模式微谐振器,称为梯度折射率(GRIN)微谐振器。 GRIN配置文件属于一种特殊的非均质介质,称为Maxwell鱼眼。对结构的模态分析进行了分析和数值研究。在空间变化的折射率情况下尝试求解亥姆霍兹方程,并通过时域有限差分法对分析结果进行数值验证。发现这两种方法相互支持。预计GRIN微谐振器的发现可能会为光子学带来新的研究和设备机会。

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