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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Optical and magnetooptical properties of granular alloys with giant magnetoresistance in the IR region of the spectrum
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Optical and magnetooptical properties of granular alloys with giant magnetoresistance in the IR region of the spectrum

机译:在光谱IR区域具有巨磁阻的粒状合金的光学和磁光性质

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The features of the optical and magnetooopical properties of granular alloys with giant magnetoresistance in the IR region are examined in reference to the magnetorefractive effect and the equatorial Kerr effect. Calculations are performed within the semiclassical approximation with consideration of spin-dependent scattering in the bulk of the granules and on their surfaces (interfaces). The expressions obtained for #sigma#_(xx)(#omega#) and #sigma#_(xy)(#omega#) are found to be sensitive to scattering on the surfaces and in the bulk of the granules, as well as to granule size, the type of impurities trapped on the interfaces, the frequency of the incident light, and the external magnetic field. For granular thin films exhibiting giant magnetoresistance, the theory predicts significant relative changes in the optical reflection and transmission coefficients when the sample is magnetized to saturation (0.02% and 20%, respectively, for giant magnetoresistance of the order of 20%), as well as Kerr and Faraday effects that are nonlinear with respect to magnetization.
机译:参照磁折射效应和赤道克尔效应,研究了在红外区域具有大磁阻的粒状合金的光学和磁光特性。计算是在半经典近似值内进行的,其中考虑了大部分颗粒及其表面(界面)中自旋相关的散射。发现从#sigma #_(xx)(#omega#)和#sigma #_(xy)(#omega#)获得的表达式对表面和大部分颗粒以及颗粒大小,界面上捕获的杂质类型,入射光的频率以及外部磁场。对于具有巨大磁阻的颗粒状薄膜,该理论预测,当样品磁化至饱和时,光学反射和透射系数的相对变化也很大(对于20%左右的巨磁阻,分别为0.02%和20%)例如Kerr和Faraday效应,它们的磁化强度是非线性的。

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