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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Cavity enhancement simulation of the magneto-optical Kerr effect in optically anisotropic multilayer structure
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Cavity enhancement simulation of the magneto-optical Kerr effect in optically anisotropic multilayer structure

机译:光学各向异性多层结构中磁光克尔效应的腔增强模拟

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摘要

In this work, a quadrilayer optical cavity of SnO2/Co/SnO2/Al/Si was established to investigate the Kerr rotations enhancement of the optically anisotropic Co film. Using the boundary matrix and the transmission matrix, the Kerr rotations of the multilayer cavity were provided. Simulation results showed that, at the incident wavelength of 300 nm, Kerr rotations in polar and longitudinal geometry could be obtained as 8.45 degrees and 0.735 degrees, respectively, which were much larger than that of the single optically anisotropic film. In addition, the Kerr rotation could be modulated by controlling the cavity length to fulfill the phase matching. After that, the optimized interlayer SnO2 thickness and incident angle were calculated as 40 nm and 30 degrees in the cavity. Simulation results confirmed that this method could effectively enhance the Kerr rotations of the optically anisotropic Co film.
机译:在这项工作中,建立了SnO2 / Co / SnO2 / Al / Si的四射光学腔以研究光学各向异性CO膜的克尔旋转。 使用边界矩阵和传输矩阵,提供了多层腔的克尔旋转。 仿真结果表明,在300nm的入射波长下,可以获得极性和纵向几何形状的克尔转,分别为8.45度和0.735度,这远远大于单光学各向异性膜的薄荷。 另外,可以通过控制空腔长度来调制卡尔旋转以满足相位匹配。 之后,优化的中间层SnO2厚度和入射角在腔中计算为40nm和30度。 仿真结果证实,该方法可以有效地增强光学各向异性CO膜的克尔旋转。

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