论文标题
通过磁性旋转耦合的非偏眼表面声波传播
Nonreciprocal surface acoustic wave propagation via magneto-rotation coupling
论文作者
论文摘要
镁 - 光子相互作用的最基本形式之一是磁性材料的固有特性,即“磁弹性耦合”。这种特殊形式的相互作用已成为描述磁性材料及其应变相关应用的基础,其中应变会引起内部磁场的变化。与40年前的磁弹性耦合不同,有人提出表面声波可以通过各向异性磁铁中的晶格旋转运动诱导表面镁。然而,这种称为磁性耦合偶联的这种镁 - 音波耦合机制的签名是难以捉摸的。在这里,我们报告了在垂直的各向异性超细膜Ta/cofeb(1.6 nm)/mgo中磁化耦合的第一个观察和理论框架,因此,它会导致非界面的声波衰减,并以均一范围的范围为100 $ $ \%$ \%$ cectective to promented Bativiation tate thate $ \%。我们的工作不仅在实验上展示了研究磁杆偶联的根本新途径,而且还证明了基于磁性耦合的应用的可行性是合理的。
One of the most fundamental forms of magnon-phonon interaction is an intrinsic property of magnetic materials, the "magnetoelastic coupling". This particular form of interaction has been the basis for describing magnetic materials and their strain related applications, where strain induces changes of internal magnetic fields. Different from the magnetoelastic coupling, more than 40 years ago, it was proposed that surface acoustic waves may induce surface magnons via rotational motion of the lattice in anisotropic magnets. However, a signature of this magnon-phonon coupling mechanism, termed magneto-rotation coupling, has been elusive. Here, we report the first observation and theoretical framework of the magneto-rotation coupling in a perpendicularly anisotropic ultra-thin film Ta/CoFeB(1.6 nm)/MgO, which consequently induces nonreciprocal acoustic wave attenuation with a unprecedented ratio up to 100$\%$ rectification at the theoretically predicted optimized condition. Our work not only experimentally demonstrates a fundamentally new path for investigating magnon-phonon coupling, but also justify the feasibility of the magneto-rotation coupling based application.