首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Engineering perpendicular magnetic anisotropy in Tb-Fe-Co thin films using ion-beam irradiation
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Engineering perpendicular magnetic anisotropy in Tb-Fe-Co thin films using ion-beam irradiation

机译:使用离子束照射的Tb-Fe-Co薄膜中的工程垂直磁各向异性

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This paper presents engineering perpendicular magnetic anisotropy in amorphous Tb-Fe-Co thin films employing irradiation of Ar+ ions at 200 and 250 keV energies with various fluences. The pristine film depicts a rectangular hysteresis loop with high perpendicular magnetic anisotropy, showing elongated, inter-connected maze-like magnetic domains. Irradiation at higher fluences (>= 10(15) ions cm(-2)) results in the transformation of magnetization reversal mechanism from rapid domain wall motion to nucleation and propagation of reverse domains due to the pinning of domain walls. The elongated magnetic domains get fragmented with reduced contrast and interestingly inhomogeneous flux-closure patterns are observed at higher fluences, indicating a spin reorientation transition. The modifications in magnetic properties are correlated with the structural investigations which reveal the crystallization of the Fe-Co phase in an amorphous Tb-Fe-Co matrix at higher energy and fluences of the projectile ions. Micromagnetic simulations complement the experimental results of domain modification. (C) 2020 Elsevier B.V. All rights reserved.
机译:本文研究了在200和250kev能量下,用不同通量的Ar+离子辐照非晶Tb-Fe-Co薄膜,获得了工程垂直磁各向异性。原始胶片描绘了一个具有高度垂直磁各向异性的矩形磁滞回线,显示出细长的、相互连接的迷宫状磁畴。在更高通量(>=10(15)个离子cm(-2))下的辐照导致磁化反转机制从畴壁的快速运动转变为畴壁的钉扎,从而导致反转畴的成核和传播。拉长的磁畴碎片化,对比度降低,有趣的是,在较高的通量下观察到不均匀的磁通闭合模式,表明自旋重取向转变。磁性的改变与结构研究相关,结构研究揭示了在较高能量和射弹离子通量下,非晶态Tb-Fe-Co基体中Fe-Co相的结晶。微磁模拟补充了磁畴改性的实验结果。(C) 2020爱思唯尔B.V.版权所有。

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