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Analytical approach to the design of microring resonators for nonlinear four-wave mixing applications

机译:非线性四波混频应用中微环谐振器设计的解析方法

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摘要

An analytical approach for obtaining linear and nonlinear design parameters of microresonators is presented. The\udeigenmode/eigenfrequency problem of planar resonators is considered in detail, with an analytical closed-form\udapproximation derived for resonators possessing a large radius to width ratio. The analysis permits the resonant\udfrequencies and mode profiles to be determined together with the dispersion properties. The dependence of the\udeffective nonlinear Kerr coefficient on the mode volume is further considered, and also the waveguide coupling\udtogether with estimates of the Q-value. Examples, which are in good agreement with numerical simulations, are\udpresented for silicon resonators. The approach can be used for designing planar microring resonators for nonlinear\udfour-wave mixing applications, such as optical Kerr frequency comb generation.
机译:提出了一种获取微谐振器线性和非线性设计参数的分析方法。详细讨论了平面谐振器的\本征模/本征频率问题,并针对具有大的半径与宽度比的谐振器推导了解析的闭合形式\ ud逼近。该分析允许确定共振/频率和模式分布以及色散特性。还进一步考虑了无效的非线性Kerr系数对模量的依赖性,并且还考虑了波导与Q值的估计一起耦合。对于硅谐振器,给出了与数值模拟非常吻合的示例。该方法可用于设计平面微环谐振器,用于非线性\四波混频应用,例如光学克尔频率梳的产生。

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