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Ferromagnetic resonance studies on colossal magnetoresistance films: Effects of homogeneity and light illumination

机译:巨磁体膜的铁磁共振研究:均匀性和光照射的影响

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Ferromagnetic resonance (FMR) in the dependence on magnetic field orientation, and effect of the laser light on the magnetic ordering were studied in colossal magnetoresistance films, La_(1-x)Sr_xMnO_3 and La_(1-x)Sr_xMnO_3. The FMR linewidth increased with the decrease in temperature in La_(1-x)Sr_xMnO_3 films, and was nearly temperature independent in La_(1-x)Sr_xMnO_3, that was attributed to the different degree of magnetic homogeneity of the films. Layered structures La_(1-x)Sr_xMnO_3 on silicon with intermediate layer of SrTiO_3 were characterized by FMR as highly homogeneous. From the orientation and temperature dependences of the FMR spectra, the effective magnetization, and effective anisotropy fields were estimated. The laser light illumination resulted in the change of FMR line shape and intensity, and was interpreted in terms of optically induced magnetic disordering and effective heating of the spin system.
机译:在巨磁场取向的依赖性中的铁磁共振(FMR)以及在巨磁阻膜中研究了激光对磁性排序的影响,LA_(1-x)SR_MNO_3和LA_(1-X)SR_XMNO_3。 FMR线宽随着LA_(1-X)SR_XMNO_3薄膜的温度降低而增加,并且在LA_(1-X)SR_XMNO_3中几乎与LA_(1-x)SR_XMNO_3无关,其归因于薄膜的不同程度的磁性均匀性。具有SRTiO_3中间层的硅上的层状结构LA_(1-X)SR_XMNO_3,其特征在于FMR,如高度均匀的。从FMR光谱的取向和温度依赖性,估计有效磁化和有效的各向异性场。激光照明导致FMR线形状和强度的变化,并且在光学诱导的磁性排放和旋转系统的有效加热方面解释。

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