论文标题

表面声波诱导的声音铁磁共振和自旋泵

Acoustic ferromagnetic resonance and spin pumping induced by surface acoustic waves

论文作者

Puebla, Jorge, Xu, Mingran, Rana, Bivas, Yamamoto, Kei, Maekawa, Sadamichi, Otani, Yoshichika

论文摘要

磁性薄膜的电压诱导磁化动力学是研究各向异性场,交换耦合,磁化阻尼和旋转泵送机制的宝贵工具。一个特别良好的技术是通过微波光子和GHz范围内的磁化特征码偶联而产生的铁磁共振(FMR)。在这里,我们回顾了由表面声波(SAW)和薄膜的磁化引起的所谓声学铁磁共振技术(A-FMR)的基本概念。有趣的是,除了微波激发FMR技术的益处外,锯和磁化之间的耦合还提供了研究镁波和自旋旋转耦合的肥沃地面。我们通过测量在晶格的旋转运动中测量锯的吸收 /传输以及SAW的衰减,描述了A-FMR的平面磁场角依赖性,并通过声旋转泵送显示随之而来的旋转电流。

Voltage induced magnetization dynamics of magnetic thin films is a valuable tool to study anisotropic fields, exchange couplings, magnetization damping and spin pumping mechanism. A particularly well established technique is the ferromagnetic resonance (FMR) generated by the coupling of microwave photons and magnetization eigenmodes in the GHz range. Here we review the basic concepts of the so-called acoustic ferromagnetic resonance technique (a-FMR) induced by the coupling of surface acoustic waves (SAW) and magnetization of thin films. Interestingly, additional to the benefits of the microwave excited FMR technique, the coupling between SAW and magnetization also offers fertile ground to study magnon-phonon and spin rotation couplings. We describe the in-plane magnetic field angle dependence of the a-FMR by measuring the absorption / transmission of SAW and the attenuation of SAW in the presence of rotational motion of the lattice, and show the consequent generation of spin current by acoustic spin pumping.

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