论文标题

带有应变诱导的垂直磁各向异性的单晶外延欧洲石榴石膜:结构,应变,磁性和自旋传输特性

Single-crystal epitaxial europium iron garnet films with strain-induced perpendicular magnetic anisotropy: structural, strain, magnetic, and spin transport properties

论文作者

Guo, M. X., Cheng, C. K., Liu, Y. C., Wu, C. N., Chen, W. N., Chen, T. Y, Wu, C. T., Hsu, C. H., Zhou, S. Q., Chang, C. F., Tjeng, L. H., Lee, S. F., Pai, C. F., Hong, M., Kwo, J.

论文摘要

单晶欧洲铁石榴石(EUIG)薄膜薄膜在gadolinium garnet(GGG)(100)使用离轴溅射的底物上外延菌株生长,具有应变诱导的垂直磁各向异性(PMA)。通过改变溅射条件,我们调整了膜中的Europium/Iron(EU/FE)组成比,以量身定制膜菌株。通过使用原子力显微镜观察到的,膜表现出极光滑,无颗粒的表面,粗糙度低至0.1 nm。高分辨率的X射线衍射分析和相互的空间图显示了平面外部外观膜的生长,非常光滑的膜/底物界面,出色的膜结晶度,在摇摆曲线扫描中,最大宽度为0.012 $^{\ circ} $,其全宽度为小宽度,而无需放松而无需放松。此外,球形像差校正的扫描透射电子显微镜在EUIG膜和GGG之间表现出一个突然的界面。测得的平方磁化磁场磁滞回路通过与角度依赖性X射线磁性二色性的测量结果结合使用样品磁力测定法证明了膜中的PMA。我们已经定制了EUIG薄膜的磁性特性,包括饱和磁化范围为71.91至124.51 EMU/C.C。 (随着(EU/FE)比率的增加),强制场从27到157.64 OE以及PMA场的强度($ H_ \ bot $)从4.21增加到18.87 KOE,而平面抗压应变从-0.774到-1.044%。我们还研究了PT/EUIG双层结构中的自旋传输,并评估了自旋混合电导的实际部分为$ 3.48 \ times10^{14}ω^{ - 1} m^{ - 2} $。我们证明了电流引起的磁化开关,低临界切换电流密度为$ 3.5 \ times10^6 A/cm^2 $,对低径流旋转旋转器件的潜力很大。

Single-crystal europium iron garnet (EuIG) thin films epitaxially strain-grown on gadolinium gallium garnet (GGG)(100) substrates using off-axis sputtering have strain-induced perpendicular magnetic anisotropy (PMA). By varying the sputtering conditions, we have tuned the europium/iron (Eu/Fe) composition ratios in the films to tailor the film strains. The films exhibited an extremely smooth, particle-free surface with roughness as low as 0.1 nm as observed using atomic force microscopy. High-resolution x-ray diffraction analysis and reciprocal space maps showed in-plane epitaxial film growth, very smooth film/substrate interface, excellent film crystallinity with a small full width at half maximum of 0.012$^{\circ}$ in the rocking curve scans, and an in-plane compressive strain without relaxation. In addition, spherical aberration-corrected scanning transmission electron microscopy showed an atomically abrupt interface between the EuIG film and GGG. The measured squarish out-of-plane magnetization-field hysteresis loops by vibrating sample magnetometry in conjunction with the measurements from angle-dependent x-ray magnetic dichroism demonstrated the PMA in the films. We have tailored the magnetic properties of the EuIG thin films, including saturation magnetization ranging from 71.91 to 124.51 emu/c.c. (increase with the (Eu/Fe) ratios), coercive field from 27 to 157.64 Oe, and the strength of PMA field ($H_\bot$) increasing from 4.21 to 18.87 kOe with the in-plane compressive strain from -0.774 to -1.044%. We have also investigated spin transport in Pt/EuIG bi-layer structure and evaluated the real part of spin mixing conductance to be $3.48\times10^{14} Ω^{-1}m^{-2}$. We demonstrated the current-induced magnetization switching with a low critical switching current density of $3.5\times10^6 A/cm^2$, showing excellent potential for low-dissipation spintronic devices.

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