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Effect of annealing on magnetic properties in ferrimagnetic GdCo alloy films with bulk perpendicular magnetic anisotropy

机译:退火对具有大块垂直磁各向异性的亚铁磁GdCo合金薄膜磁性能的影响

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Magnetic properties in ferrimagnetic GdCo alloy films with bulk perpendicular magnetic anisotropy (PMA) are investigated as a function of annealing temperature (Tanneal) and annealing time for several capping layers. Magnetic properties in films capped by TaOx vary markedly with Tanneal; the saturation magnetization and coercivity vary progressively with increasing Tanneal up to 300°C, and above that temperature, PMA is lost abruptly. By comparing the annealing temperature dependence for Co-dominated and Gd-dominated compositions close to the magnetization compensation point, the data are readily explained by preferential oxidation of Gd during annealing. When films are capped by a Ta/Pt bilayer, the film properties are stable up Tanneal = 300 °C, indicating that oxidation at high temperatures is effectively blocked, but the abrupt loss of PMA for Tanneal 300 °C is still observed. X-ray diffraction measurement reveals that the amorphous structure of the films remains the same after high-temperature annealing that is sufficient to remove PMA, indicating that crystallization from the amorphous phase is not responsible for the lack of PMA. Instead, our results suggest that high annealing temperatures may cause segregation of Co and Gd atoms in the films, which reduces anisotropic pair-pair correlations responsible for the observed bulk PMA in the as-grown state.
机译:研究了具有体垂直磁各向异性(PMA)的亚铁磁GdCo合金薄膜的磁性能随退火温度(Tanneal)和退火时间对多个覆盖层的影响。 TaOx覆盖的薄膜的磁性能随Tanneal的变化而显着变化。饱和磁化强度和矫顽力会随着Tanneal的增加而逐渐变化,直到300°C,而在该温度以上,PMA突然消失。通过比较接近磁化补偿点的Co为主和Gd为主的组合物的退火温度依赖性,可以通过退火过程中Gd的优先氧化来轻松解释数据。当薄膜被Ta / Pt双层覆盖时,薄膜性能在Tanneal = 300°C时是稳定的,表明高温下的氧化被有效阻止,但仍观察到Tanneal 300°C的PMA突然损失。 X射线衍射测量表明,在足以去除PMA的高温退火之后,膜的非晶态结构保持相同,这表明从非晶态相的结晶并不构成缺少PMA的原因。相反,我们的结果表明,较高的退火温度可能会导致薄膜中Co和Gd原子偏析,从而降低了各向异性的成对对相关性,这些成对的相关性是造成成年状态下观察到的大量PMA的原因。

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