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Ferromagnet/Superconductor Hybrid Magnonic Metamaterials

机译:铁磁/超导体混合橡胶超材料

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摘要

In this work, a class of metamaterials is proposed on the basis of ferromagnet/superconductor hybridization for applications in magnonics. These metamaterials comprise of a ferromagnetic magnon medium that is coupled inductively to a superconducting periodic microstructure. Spectroscopy of magnetization dynamics in such hybrid evidences formation of areas in the medium with alternating dispersions for spin wave propagation, which is the basic requirement for the development of metamaterials known as magnonic crystals. The spectrum allows for derivation of the impact of the superconducting structure on the dispersion: it takes place due to a diamagnetic response of superconductors on the external and stray magnetic fields. In addition, the spectrum displays a dependence on the superconducting critical state of the structure: the Meissner and the mixed states of a type II superconductor are distinguished. This dependence hints toward nonlinear response of hybrid metamaterials on the magnetic field. Investigation of the spin wave dispersion in hybrid metamaterials shows formation of allowed and forbidden bands for spin wave propagation. The band structures are governed by the geometry of spin wave propagation: in the backward volume geometry the band structure is conventional, while in the surface geometry the band structure is nonreciprocal and is formed by indirect band gaps.
机译:在这项工作中,基于氧化镁中的氧化铁/超导体杂交来提出一类超材料。这些超材料包括铁磁磁铁介质,其耦合地耦合到超导周期微结构。这种混合证明的磁化动力学的光谱在介质中的区域形成具有交替分散的旋转波传播,这是称为称为橡胶晶体的超材料的基本要求。光谱允许导出超导结构对色散的影响:由于外部和磁场上的超导体的抗磁响应而发生。另外,频谱显示对结构的超导临界状态的依赖性:区分II型超导体的Meissner和混合状态。该依赖性提示磁场上杂交超材料的非线性响应。混合超材料中旋转波分散的研究显示了旋转波传播的允许和禁止带的形成。频带结构由自旋波传播的几何形状控制:在向后体积几何形状中,带结构是常规的,而在表面几何形状中,带结构是非探测的,并且由间接带间隙形成。

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