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Dynamic mode theory of optical resonators undergoing refractive index changes

机译:折射率变化的光谐振器的动态模式理论

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We present a theoretical model describing the dynamics of the electromagnetic field in an optical resonator undergoing refractive index changes. We use an operator formulation of Maxwell's equations with a standard timedependent perturbation theory to derive the dynamic mode-amplitude equations that govern the response of a resonator to a perturbing dipole-moment density. We show that in the case of time-dependent changes in the refractive index, a coupling matrix Γ_(km)(t) that appears in the equations accounts for all novel physical processes that can be expected to occur. In particular, the phenomenon of adiabatic wavelength conversion is governed by the diagonal elements of this matrix, and the off-diagonal elements are responsible for the transfer of energy from an excited resonator mode into its neighboring modes. Our model clearly shows that the latter process can occur only when the index changes are spatially nonuniform. We discuss the spatially uniform and nonuniform cases separately and compare the predictions of our model with experimental data available in the literature. The overall good agreement suggests that this model should be useful in the study of dynamic optical resonators. Moreover, since we do not make any assumptions about the type of dielectric cavity used, the width of input pulses, or the speed with which the refractive index is changed, this model should be applicable under most experimental situations.
机译:我们提供了一个理论模型,描述了经历折射率变化的光学谐振器中电磁场的动力学。我们使用带有标准时变扰动理论的麦克斯韦方程的算子公式来得出控制谐振器对扰动偶极矩密度的响应的动态模式-振幅方程。我们表明,在折射率随时间变化的情况下,方程中出现的耦合矩阵Γ_(km)(t)解释了所有可能发生的新颖物理过程。特别地,绝热波长转换现象由该矩阵的对角元素控制,非对角元素负责将能量从受激谐振器模式传递到其相邻模式。我们的模型清楚地表明,只有当索引变化在空间上不均匀时,才会发生后一种过程。我们分别讨论空间均匀和不均匀的情况,并将我们模型的预测与文献中提供的实验数据进行比较。总体良好的协议表明,该模型应在动态光学谐振器的研究中有用。而且,由于我们不对所用介质腔的类型,输入脉冲的宽度或折射率变化的速度做出任何假设,因此该模型应适用于大多数实验情况。

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