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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Spin-transfer torque induced vortex dynamics in Fe/Ag/Fe nanopillars
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Spin-transfer torque induced vortex dynamics in Fe/Ag/Fe nanopillars

机译:Fe / Ag / Fe纳米柱中自旋传递扭矩引起的涡旋动力学

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We report on the experimental and analytical work on spin-transfer torque induced vortex dynamics in metallic nanopillars with in-plane magnetized layers. We study nanopillars with a diameter of 150 nm, containing two Fe layers with a thickness of 15 nm and 30 nm, respectively, separated by a 6 nm Ag spacer. The sample geometry is such that it allows for the formation of magnetic vortices in the Fe discs. As confirmed by micromagnetic simulations, we are able to prepare states where one magnetic layer is homogeneously magnetized while the other contains a vortex. We experimentally show that in this configuration spin-transfer torque can excite vortex dynamics and analyse their dependence on a magnetic field applied in the sample plane. The centre of gyration is continuously dislocated from the disc centre, and the potential changes its shape with field strength. The latter is reflected in the field dependence of the excitation frequency. In the second part we propose a novel mechanism for the excitation of the gyrotropic mode in nanopillars with a perfectly homogeneously magnetized in-plane polarizing layer. We analytically show that in this configuration the vortex can absorb energy from the spin-polarized electric current if the angular spin-transfer efficiency function is asymmetric. This effect is supported by micromagnetic simulations.
机译:我们报告了在具有平面磁化层的金属纳米柱中自旋传递扭矩引起的涡旋动力学的实验和分析工作。我们研究了直径为150 nm的纳米柱,其中包含两个Fe层,其厚度分别为15 nm和30 nm,并被6 nm Ag隔离层隔开。样品的几何形状允许在Fe圆盘中形成磁涡流。正如微磁模拟所证实的,我们能够准备其中一个磁性层被均匀磁化而另一个磁性层包含涡旋的状态。我们实验证明,在这种配置下,自旋转移转矩可以激发涡旋动力学并分析其对样品平面中施加的磁场的依赖性。旋转中心连续不断地偏离圆盘中心,电势随场强而改变。后者反映在激励频率的场依赖性上。在第二部分中,我们提出了一种新颖的机制,用于激发具有完美均匀磁化的面内偏振层的纳米柱中的回旋模。我们分析表明,在这种配置中,如果角自旋传递效率函数不对称,则涡旋可以从自旋极化电流吸收能量。微磁模拟支持这种效果。

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