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EXOTIC THIN FILMS MADE FROM COBALT FERRITE

机译:钴铁矿制成的异型薄膜

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摘要

Epitaxial CoFe_2O_4 thin films have been grown by PLD on (100) MgO substrate. Two types of spin-reorientation have been observed in such films upon annealing or increasing the film-thickness. In the as-deposited layers and at low thickness the easy axis is confined to the normal to the film plane whereas at large thickness the film plane becomes the preferential direction of the magnetization. On the other hand annealing induces a reorientation of magnetic anisotropy, which switches from the normal to the film plane in the as-deposited film to be in-plane aligned in the annealed state. The origin of both reorientations is explained in term of competition between stress and magnetocrystalline anisotropies. In the as-deposited state the tensile stress induces a huge perpendicular anisotropy, dominating the in-plane magnetocrystalline component. However annealing or increasing the film thickness releases the stress and allows the in-plane magnetocrystalline anisotropy to take the lead.
机译:外延CoFe_2O_4薄膜已经通过PLD在(100)MgO衬底上生长。在退火或增加膜厚度时,在这种膜中观察到两种类型的自旋取向。在刚沉积的层中,厚度较小时,易轴被限制在垂直于薄膜平面的方向,而厚度较大时,薄膜平面成为磁化的优先方向。另一方面,退火引起磁各向异性的重新定向,该磁各向异性从所沉积的膜中的法线切换到膜平面,从而在退火状态下面内对准。两种重新定向的起源都是根据应力与磁晶各向异性之间的竞争来解释的。在沉积状态下,拉应力引起巨大的垂直各向异性,主导着平面内的磁晶成分。然而,退火或增加膜厚度可释放应力,并使面内磁晶各向异性占主导地位。

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