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Modeling of high-speed magnetooptic beam deflection

机译:高速磁光射束偏转的建模

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摘要

We propose a magnetooptic (MO) deflector based on a thin-film iron garnet material that operates in the gigahertz regime. The Landau-Lifshitz equation, which governs magnetization dynamics, is combined with a beam-propagation method (BPM) to evaluate the performance of the proposed device. Using practical material parameters, a deflection efficiency of 20% is predicted. Diffraction effects and temporal response are discussed and illustrated using a quasi-time-dependent BPM. This theoretical framework is not only useful for the demonstration of the MO beam deflector, but it is also practical in the design and optimization of other magnetophotonic devices.
机译:我们提出了一种基于薄膜铁石榴石材料的磁光(MO)偏转器,其工作频率为千兆赫兹。将控制磁化动力学的Landau-Lifshitz方程与束传播方法(BPM)组合在一起,以评估所提出设备的性能。使用实际的材料参数,可以预测出20%的偏转效率。使用准时间相关的BPM讨论并说明了衍射效应和时间响应。该理论框架不仅对演示MO束偏转器有用,而且在其他磁光子器件的设计和优化中也很实用。

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