Salaheldeen M, Martínez-Goyeneche L, Álvarez-Alonso P, Fernández A
Physics Department, Faculty of Science, Sohag University, 82524, Sohag, Egypt. Depto. Física, Universidad de Oviedo, C/Federico García Lorca 18, 33007, Oviedo, Asturias, Spain.
Nanotechnology. 2020 Nov 27;31(48):485708. doi: 10.1088/1361-6528/abb109.
Development of perpendicular magnetic anisotropy thin films is a requisite for many applications. In this work, we have illustrated the enhancement of the PMA of Hard (Co)/Soft (Permalloy, Py) ferromagnetic bilayers by depositing them onto nanoporous anodic alumina membranes with different hole diameters varying in the range between 30 nm and 95 nm. A dramatic change in the hysteresis loops behaviour with hole size, D, and magnetic surface cover ratio parameters has been observed: (1) for samples with small antidot hole diameters, the in-plane (INP) hysteresis loops show single-step magnetic behaviour; (2) for D = 75 nm, the hysteresis loops of Co/Py and Py samples exhibit a multistep magnetic behaviour; (3) a decreasing coercivity in the INP hysteresis loops for antidot arrays samples with D> 75 nm has been detected as a consequence of the reduction of the INP magnetic anisotropy and the rising of the out-of-plane component. A crossover of the magnetic anisotropy from the INP to out-of-plane for bilayer antidot samples has been observed for Co/Py ferromagnetic bilayers, favoured by the interfacial exchange coupling between the two ferromagnetic materials. These findings can be of high interest for the development of novel magnetic sensors and for perpendicular-magnetic recording patterned media based on template-assisted deposition techniques.
垂直磁各向异性薄膜的开发是许多应用的必要条件。在这项工作中,我们通过将硬磁(Co)/软磁(坡莫合金,Py)铁磁双层沉积到孔径在30nm至95nm范围内变化的纳米多孔阳极氧化铝膜上,展示了其垂直磁各向异性的增强。观察到磁滞回线行为随孔径D和磁性表面覆盖率参数发生了显著变化:(1)对于具有小反点孔径的样品,面内(INP)磁滞回线显示单步磁行为;(2)对于D = 75nm,Co/Py和Py样品的磁滞回线呈现多步磁行为;(3)由于面内磁各向异性的降低和平面外分量的增加,检测到D> 75nm的反点阵列样品在面内磁滞回线中的矫顽力降低。对于Co/Py铁磁双层,观察到双层反点样品的磁各向异性从面内向平面外的转变,这得益于两种铁磁材料之间的界面交换耦合。这些发现对于新型磁传感器的开发以及基于模板辅助沉积技术的垂直磁记录图案化介质可能具有高度的重要性。