Tailoring of Creep Regime Domain Wall Dynamics in Perpendicularly Magnetized Pd/Co/Pd Trilayers

IF 4.3 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Anurag Keloth, Rakhul Raj, V. Raghavendra Reddy, Mukul Gupta, Ilaria Carlomagno, Andrei Gloskovksii, Timo Kuschel, Ajay Gupta, Sarathlal Koyiloth Vayalil
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Abstract

Understanding magnetic domain wall (DW) dynamics is vital for improving the performance of heavy metal/ferromagnet based spintronic devices. Pd/Co/Pd multilayers hosting perpendicular magnetic anisotropy and interfacial Dzyaloshinskii-Moriya interaction are prototypes for high density magnetic memory devices. This work presents the creep regime DW dynamics in Pd/Co/Pd trilayers with Ta buffer layer excited by symmetric field-induced domain wall motion using Kerr microscopy. A systematic increment of DW velocity with increasing Co thickness is observed. SQUID-VSM measurements reveal that the effective anisotropy constant decreases with the Co layer, leading to an increased DW width. Kerr microscopy images confirm that the DW is becoming rougher with magnetic layer thickness because of the dominance of magnetostatic energy over the DW energy. Hard X-ray photoemission spectroscopy (HAXPES) reveals the presence of alloying at interfaces of Co/Pd. The asymmetry in magnetic circular dichroism HAXPES at the Pd 3d edge pictures the induced magnetic moment in Pd which is consistent with the larger saturation magnetization obtained from vibrating sample magnetometry. Extended X-ray absorption fine structure performed in out-of-plane and in-plane geometry shows the disordered nature of the Co local environment with the interdiffusion of Pd atoms into Co causing an asymmetry in the bonds.

Abstract Image

垂直磁化Pd/Co/Pd三层中蠕变区壁动力学的裁剪
了解磁畴壁(DW)动力学对于提高重金属/铁磁体自旋电子器件的性能至关重要。具有垂直磁各向异性和界面Dzyaloshinskii-Moriya相互作用的Pd/Co/Pd多层膜是高密度磁存储器件的原型。本文利用Kerr显微镜研究了对称场致畴壁运动激发具有Ta缓冲层的Pd/Co/Pd三层中的蠕变状态DW动力学。随着Co厚度的增加,DW速度有系统的增加。SQUID-VSM测量表明,有效各向异性常数随着Co层的减小而减小,导致DW宽度增加。克尔显微镜图像证实,由于静磁能在DW能量上占主导地位,DW随着磁层厚度的增加而变得粗糙。硬x射线光发射光谱(HAXPES)揭示了Co/Pd界面合金化的存在。磁圆二色HAXPES在Pd三维边缘处的不对称性反映了Pd中的感应磁矩,这与振动样品磁强计获得的较大饱和磁化强度一致。在面外和面内几何结构中进行的扩展x射线吸收精细结构显示了Co局部环境的无序性,Pd原子在Co中的相互扩散导致了键的不对称性。
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来源期刊
Advanced Materials Interfaces
Advanced Materials Interfaces CHEMISTRY, MULTIDISCIPLINARY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
8.40
自引率
5.60%
发文量
1174
审稿时长
1.3 months
期刊介绍: Advanced Materials Interfaces publishes top-level research on interface technologies and effects. Considering any interface formed between solids, liquids, and gases, the journal ensures an interdisciplinary blend of physics, chemistry, materials science, and life sciences. Advanced Materials Interfaces was launched in 2014 and received an Impact Factor of 4.834 in 2018. The scope of Advanced Materials Interfaces is dedicated to interfaces and surfaces that play an essential role in virtually all materials and devices. Physics, chemistry, materials science and life sciences blend to encourage new, cross-pollinating ideas, which will drive forward our understanding of the processes at the interface. Advanced Materials Interfaces covers all topics in interface-related research: Oil / water separation, Applications of nanostructured materials, 2D materials and heterostructures, Surfaces and interfaces in organic electronic devices, Catalysis and membranes, Self-assembly and nanopatterned surfaces, Composite and coating materials, Biointerfaces for technical and medical applications. Advanced Materials Interfaces provides a forum for topics on surface and interface science with a wide choice of formats: Reviews, Full Papers, and Communications, as well as Progress Reports and Research News.
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