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Ferrimagnetic Tb–Fe Alloy Thin Films: Composition and Thickness Dependence of Magnetic Properties and All-Optical Switching

机译:铁磁性Tb-Fe合金薄膜:磁性和全光开关的成分和厚度依赖性

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Ferrimagnetic rare earth - transition metal Tb-Fe alloy thin films exhibit a variety of different magnetic properties, which depends strongly on composition and temperature. In this study, first the influence of the film thickness (5 - 85 nm) on the sample magnetic properties was investigated in a wide composition range between 15 at.% and 38 at.% of Tb. From our results, we find that the compensation point, remanent magnetization, and magnetic anisotropy of the Tb-Fe films depend not only on the composition but also on the thickness of the magnetic film up to a critical thickness of about 20-30 nm. Beyond this critical thickness, only slight changes in magnetic properties are observed. This behavior can be attributed to a growth-induced modification of the microstructure of the amorphous films, which affects the short range order. As a result, a more collinear alignment of the distributed magnetic moments of Tb along the out-of-plane direction with film thickness is obtained. This increasing contribution of the Tb sublattice magnetization to the total sample magnetization is equivalent to a sample becoming richer in Tb and can be referred to as an “effective” composition. Furthermore, the possibility of all-optical switching, where the magnetization orientation of Tb-Fe can be reversed solely by circularly polarized laser pulses, was analyzed for a broad range of compositions and film thicknesses and correlated to the underlying magnetic properties.
机译:铁磁性稀土-过渡金属Tb-Fe合金薄膜表现出多种不同的磁性能,这在很大程度上取决于成分和温度。在这项研究中,首先,在Tb的15 at。%至38 at。%的较宽组成范围内,研究了膜厚(5-85 nm)对样品磁性能的影响。从我们的结果中,我们发现,Tb-Fe膜的补偿点,剩余磁化强度和磁各向异性不仅取决于组成,而且还取决于磁性膜的厚度,直至约20-30 nm的临界厚度。超过此临界厚度,仅观察到磁性能的微小变化。此行为可归因于非晶膜微结构的生长诱导改性,这会影响短程有序。结果,获得了沿着面外方向的Tb的分布磁矩与膜厚度的更共线的对准。 Tb亚晶格磁化强度对总样品磁化强度的这种增加贡献相当于样品中Tb变得更丰富,可以称为“有效”成分。此外,分析了全光转换的可能性,其中Tb-Fe的磁化方向可以仅通过圆偏振激光脉冲来反转,分析了大范围的成分和薄膜厚度,并与潜在的磁性相关。

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