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磁性多层膜中斯格明子的前景与挑战 被引量:1
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作者 江万军 《物理》 CAS 北大核心 2020年第2期77-83,共7页
拓扑磁学是近年内磁学领域内衍生出的一个子学科,它以寻找、研究和利用磁性材料中的拓扑自旋结构为核心目标,相关研究在凝聚态物理领域内已成为一个较大的分支。这些拓扑自旋结构包括:磁涡旋(magnetic vortex)、磁性斯格明子(magnetic s... 拓扑磁学是近年内磁学领域内衍生出的一个子学科,它以寻找、研究和利用磁性材料中的拓扑自旋结构为核心目标,相关研究在凝聚态物理领域内已成为一个较大的分支。这些拓扑自旋结构包括:磁涡旋(magnetic vortex)、磁性斯格明子(magnetic skyrmion)、磁浮子(magnetic bobber)等。文章将以磁性多层膜中的斯格明子为对象,从材料优化、拓扑物理、表征、操控、探测等角度出发,详细讨论当前的主要研究热点,以及未来功能器件应用方面的一些挑战。 展开更多
关键词 磁性斯格明子 磁性多层膜 界面磁学 自旋轨道力矩 自旋拓扑物理
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A review of current research on spin currents and spin–orbit torques
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作者 Xiao-Yu Feng Qi-Han Zhang +5 位作者 Han-Wen Zhang Yi Zhang Rui Zhong Bo-Wen Lu Jiang-Wei Cao Xiao-Long Fan 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第10期121-152,共32页
Spintronics is a new discipline focusing on the research and application of electronic spin properties. After the discovery of the giant magnetoresistance effect in 1988, spintronics has had a huge impact on scientifi... Spintronics is a new discipline focusing on the research and application of electronic spin properties. After the discovery of the giant magnetoresistance effect in 1988, spintronics has had a huge impact on scientific progress and related applications in the development of information technology. In recent decades, the main motivation in spintronics has been efficiently controlling local magnetization using electron flow or voltage rather than controlling the electron flow using magnetization. Using spin-orbit coupling in a material can convert a charge current into a pure spin current(a flow of spin momenta without a charge flow) and generate a spin-orbit torque on the adjacent ferromagnets. The ability of spintronic devices to utilize spin-orbit torques to manipulate the magnetization has resulted in large-scale developments such as magnetic random-access memories and has boosted the spintronic research area. Here in, we review the theoretical and experimental results that have established this subfield of spintronics. We introduce the concept of a pure spin current and spin-orbit torques within the experimental framework, and we review transport-, magnetization-dynamics-, and opticalbased measurements and link then to both phenomenological and microscopic theories of the effect. The focus is on the related progress reported from Chinese universities and institutes, and we specifically highlight the contributions made by Chinese researchers. 展开更多
关键词 spin-orbit coupling PURE spin CURRENT spin-orbit torques physical effects associated with spin CURRENT
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