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Acoustic excitation and electrical detection of spin waves and spin currents in hypersonic bulk waves resonator with YIG/Pt system

机译:YIG / Pt系统在高超声速体波谐振器中自旋波和自旋电流的声激发和电学检测

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摘要

We report on the self-consisted semi-analytical theory of magnetoelastic excitation and electrical detection of spin waves and spin currents in hypersonic bulk acoustic waves resonator with ZnO-GGG-YIG/Pt layered structure. Electrical detection of acoustically driven spin waves occurs due to spin pumping from YIG to Pt and inverse spin Hall (ISHE) effect in Pt as well as due to electrical response of ZnO piezotransducer. The frequency-field dependences of the resonator frequencies and ISHE voltage U-ISHE are correlated with experimental ones observed previously. Their fitting allows to determine some magnetic and magnetoelastic parameters of YIG. The analysis of the YIG film thickness influence on U-ISHE gives the possibility to find the optimal thickness for maximal U-ISHE value.
机译:我们报告了自弹性半解析理论的磁弹性激发和电学检测自旋波和自旋电流在具有ZnO-GGG-YIG / Pt分层结构的高超音速体声波谐振器中的作用。声驱动自旋波的电学检测是由于从YIG到Pt的自旋泵浦和Pt中的逆自旋霍尔(ISHE)效应以及ZnO压电换能器的电响应引起的。谐振器频率和ISHE电压U-ISHE的频率场相关性与先前观察到的实验相关。它们的拟合可以确定YIG的一些磁和磁弹性参数。通过分析YIG膜厚度对U-ISHE的影响,可以找到最大U-ISHE值的最佳厚度。

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