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Unidirectional response in spin-torque driven magnetization dynamics

机译:自旋转矩驱动的磁化动力学中的单向响应

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It was recently demonstrated in bilaycrs of permalloy and platinum, that by combining spin torques arising from the spin Hall effect with Oersted field-like torques, magnetization dynamics can be induced with a directional preference.1 This "unidirectional" magnetization dynamic effect is made possible by exploiting the different even and odd symmetry that damping-like and field-like torques respectively have when magnetization is reversed. The experimental method used to demonstrate this effect was the spin-torque ferromagnetic (ST-FMR) resonance technique; a popular tool used in the phenomenological quantification of a myriad of damping-like and field-like torques. In this report, we review the phenomenology which is used to describe and analyze the unidirectional magnetization dynamic effect in ST-FMR measurements. We will focus on how the asymmetry in the dynamics also is present in the phase angle of the magnetization precession. We conclude by demonstrating a utility of this directional effect; we will outline an improved experimental method that can be used to distinguish a phase-shifted field-like torque in a ST-FMR experiment from a combination of field-like and damping-like torques.
机译:最近在坡莫合金和铂的双分子合金中证明,通过将自旋霍尔效应产生的自旋转矩与奥斯特场状转矩相结合,可以产生具有方向性的磁化动力学。1这种“单向”磁化动力学效应成为可能通过利用不同的偶数和奇数对称性,当磁化强度反转时,阻尼类转矩和场类转矩分别具有。用来证明这种效应的实验方法是自旋转矩铁磁(ST-FMR)共振技术。一种流行的工具,用于对大量类似阻尼和类似磁场的扭矩进行现象学量化。在本报告中,我们回顾了用于描述和分析ST-FMR测量中单向磁化动态效应的现象学。我们将集中讨论在磁化进动的相角中动力学中的不对称性也将如何存在。我们以证明这种定向效应的效用作为结论。我们将概述一种改进的实验方法,该方法可用于将ST-FMR实验中的相移磁场样转矩与类似磁场和类似阻尼的转矩相区别。

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