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Local field effects in magneto-optics of two-dimensional arrays of ferromagnetic nanoparticles

机译:铁磁纳米粒子二维阵列的磁光场效应

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A theory of the polar magneto-optical Kerr effect in a layer of small ferromagnetic particles has been developed in the framework of the Green's function method of electrodynamics. The manifestation in magneto-optics of the local field effect, which is initiated by the contribution to the effective field of dipole moments induced in particles, has been studied in terms of the model of a square lattice of ferromagnetic ellipsoids. The magneto-optical Kerr effect stimulated under normal incidence of a linearly polarized electromagnetic wave on a layer of particles magnetized perpendicular to the layer plane has been analyzed. The dependence of the Kerr rotation angle in an array of ellipsoidal Co particles embedded in the transparent dielectric CaF_2 on the light frequency, the parameters of the ellipsoidal particles, and the lattice period (concentration of the magnet in the layer) has been studied numerically. It has been shown that, within a broad (2.0-4.5 eV) spectral range, the local field effect studied as a function of increasing concentration of Co particles in the layer manifests itself in the reversal of the sign of the Kerr rotation compared to that observed in a single ellipsoid or a solid Co film.
机译:在电动力学的格林函数方法的框架内,已经开发出在小铁磁颗粒层中的极性磁光克尔效应的理论。根据铁磁椭球的方格模型,研究了磁光中局部场效应的表现,这种效应是由粒子中感应的偶极矩对有效场的贡献所引发的。分析了在垂直于层平面磁化的粒子层上的线性极化电磁波的法线入射下激发的磁光克尔效应。数值研究了嵌入透明电介质CaF_2中的椭圆形Co粒子阵列中Kerr旋转角对光频率,椭圆形粒子参数和晶格周期(层中磁体的浓度)的依赖性。结果表明,在较宽的光谱范围(2.0-4.5 eV)中,研究的局部场效应是随着层中Co颗粒浓度的增加而发生的,与之相比,其在Kerr旋转符号的逆转中表现出自身。在单个椭圆体或固态Co膜中观察到。

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