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Magnetoelastic Waves in Submicron Yttrium-Iron Garnet Films Manufactured by Means of Ion-Beam Sputtering onto Gadolinium-Gallium Garnet Substrates

机译:通过离子束溅射制造的亚微米钇 - 铁石榴膜的磁力弹性波在钆 - 镓石榴石基材上制造

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摘要

A series of equidistant oscillations have been revealed in the transmission spectrum and dispersion law of Damon-Eshbach surface magnetostatic waves (SMSWs) propagating in submicron (200-nm) yttrium-iron garnet (YIG) films manufactured by means of ion-beam sputtering onto gadolinium-gallium garnet (GGG) substrates. These oscillations correspond to the excitation of magnetoelastic waves in the YIG-GGG structure at frequencies of resonant interaction between the surface magnetostatic waves and the elastic shear modes of the wave-guiding YIG-GGG structure. The obtained results show that the studied YIG films are characterized by an efficient magnetoelastic coupling between their spin and elastic subsystems and the matching of acoustic impedances at the YIG-GGG interface, thus providing the possibility to consider the ion-beam sputtering of YIG films onto GGG substrates as a promising technology for the creation of magnonic and straintronic devices.
机译:在通过离子束溅射制造的亚微米(200-nm)钇 - 铁石榴石(YIG)薄膜中传播的透射频谱和分散定律,在亚孔-eeshbach表面磁静波(SMSW)的传输频谱和分散规律中揭示了一系列等距振荡。 钆 - 镓石榴石(GGG)基材。 这些振荡对应于在表面磁振荡波和波引导yig-ggg结构之间的谐振相互作用频率的YIG-GGG结构中的磁性波浪的激发。 得到的结果表明,所研究的YIG膜的特征在于它们的旋转和弹性子系统之间的有效磁力耦合,以及在YIG-GGG界面处的声学阻抗的匹配,从而提供了将YIG薄膜的离子束溅射考虑到的可能性 GGG基板作为创建千兆和剧烈器件的有希望的技术。

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  • 来源
    《Technical physics》 |2018年第7期|共7页
  • 作者单位

    Russian Acad Sci Kotelnikov Inst Radio Engn &

    Elect Saratov Branch Saratov 410019 Russia;

    Russian Acad Sci Kotelnikov Inst Radio Engn &

    Elect Saratov Branch Saratov 410019 Russia;

    Russian Acad Sci Kotelnikov Inst Radio Engn &

    Elect Saratov Branch Saratov 410019 Russia;

    Russian Acad Sci Kotelnikov Inst Radio Engn &

    Elect Saratov Branch Saratov 410019 Russia;

    Natl Acad Sci Belarus Sci &

    Pract Ctr Mat Sci Minsk 220072 BELARUS;

    Saratov NG Chernyshevskii State Univ Saratov 410012 Russia;

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