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Frequency-dependent FDTD modeling of optically controlled dielectric resonators

机译:光控介电谐振器的频率相关FDTD建模

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摘要

A theoretical analysis is carried out to describe the performance of optically controlled dielectric resonators. A previously developed frequency-dependent finite-difference-time domain (FDTD) formulation has been used to estimate the effect that solid state plasmas have on the resonant frequency on dielectric resonators. Optical generation of plasmas in contact with dielectric resonators is being considered here as a possible means of controlling the resonator's frequency. The effect that carrier diffusion and recombination-generation have on plasma permittivity and penetration depth are taken into account in this analysis. The results are compared with measurement and are shown to yield a quantitative estimate of the optically induced dielectric resonator frequency shift as a function of the illumination, properties of the plasma host semiconductor, and the properties of the dielectric resonator.
机译:进行了理论分析来描述光控介电谐振器的性能。先前开发的频率相关的有限差分时域(FDTD)公式已用于估算固态等离子体对介电共振器共振频率的影响。与介电谐振器接触的等离子体的光学产生在这里被认为是控制谐振器频率的可能手段。在此分析中考虑了载流子扩散和重组产生对血浆电容率和穿透深度的影响。将结果与测量结果进行比较,结果表明,该结果可得出光感应介电共振器频移的定量估计,该频移随照明度,等离子主体半导体的特性以及介电共振器的特性而变化。

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