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Light propagation in a planar dielectric waveguide with a gyrotropic layer

机译:光在具有回旋层的平面介质波导中的传播

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The nature of the magneto-optic Kerr effect in a planar dielectric waveguide geometry has been investigated by calculation of the Jones matrix for a planar waveguide structure with a gyrotropic magnetic material as one wall. The intensity of the component of the field that is in the polarization state orthogonal to the input was calculated as a function of length of the gyrotropic material and input polarization state. The degree of polarization rotation depends on the relative orientation of the magnetization in the magnetic material and the direction of propagation. It is found that there exists an optimal waveguide length and input polarization at which the output signal is maximized and that a significant enhancement in polarization rotation is available with respect to free-space reflection. These results indicate that a magnetic-film-bounded planar waveguide can be used for device applications such as magnetic field sensors or magneto-optic modulators. (C) 1998 Optical Society of America OCIS codes: 060.2370, 060.4080, 230.3810, 230.7390, 350.5500. [References: 11]
机译:通过计算以回旋磁性材料为一壁的平面波导结构的琼斯矩阵,研究了平面介质波导几何形状中磁光克尔效应的性质。计算垂直于输入的偏振态的场分量的强度,作为回旋材料的长度和输入偏振态的函数。极化旋转的程度取决于磁性材料中磁化的相对方向和传播方向。发现存在最佳的波导长度和输入极化,在该处最佳输出信号被最大化,并且相对于自由空间反射,极化旋转的显着增强是可用的。这些结果表明,与磁性膜结合的平面波导可用于诸如磁场传感器或磁光调制器之类的设备应用。 (C)1998年美国光学学会OCIS代码:060.2370、060.4080、230.3810、230.7390、350.5500。 [参考:11]

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