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Ferromagnetic properties of GdN thin films studied by temperature dependent circular polarized spectroscopy

机译:GdN薄膜的铁磁性能的温度依赖性圆偏振光谱研究

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Magneto-optical properties of GdN thin films have been investigated by employing temperature dependent optical circular dichroism spectroscopy and angular dependent resonance field measurement. Spin-splitting in the band structure of GdN thin films has been evaluated by optical circular dichroism absorbance spectra, and the manifested spin-splitting energy ascribed to the difference between majority and minority spin band states in GdN. The plot of left circular polarization and right circular polarization bandgap reflects the half-hysteresis loop (positive side) trend, which is evidenced by magnetization measurements. The angular dependent resonance field measurements showed strong magnetic anisotropy along in-plane of GdN, which is attributed to the disturbance in the spin alignment in GdN. We demonstrate that the ferromagnetic properties depend on the film thickness. These results provide a pathway to control the spin ordering using circularly polarized light and the magnetic anisotropy.
机译:GdN薄膜的磁光性能已通过采用温度相关的光学圆二色性光谱和角度相关的共振场测量进行了研究。已经通过光学圆二色性吸收光谱评估了GdN薄膜的带结构中的自旋分裂,并且所显示的自旋分裂能归因于GdN中的大多数和少数自旋能带状态之间的差异。左圆极化和右圆极化带隙的图反映了半磁滞回线(正侧)趋势,这通过磁化测量得到了证明。依赖于角度的共振场测量结果显示沿GdN的平面内存在强的磁各向异性,这归因于GdN中自旋对准的干扰。我们证明铁磁性能取决于薄膜厚度。这些结果提供了使用圆偏振光和磁各向异性来控制自旋有序的途径。

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