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Antiferromagnetic order in hybrid electromagnetic metamaterials

机译:混合电磁超材料中的反铁磁序

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We demonstrate experimentally a new type of order in optical magnetism resembling the staggered structure of spins in antiferromagnetic ordered materials. We study hybrid electromagnetic metasurfaces created by assembling hybrid meta-atoms formed by metallic split-ring resonators and dielectric particles with a high refractive index, both supporting optically-induced magnetic dipole resonances of different origin. Each pair (or 'metamolecule') is characterized by two interacting magnetic dipole moments with the distance-dependent magnetization resembling the spin exchange interaction in magnetic materials. By directly mapping the structure of the electromagnetic fields, we demonstrate experimentally that strong coupling between the optically-induced magnetic moments of different origin can flip the magnetisation orientation in a metamolecule creating an antiferromagnetic lattice of staggered optically-induced magnetic moments in hybrid metasurfaces.
机译:我们通过实验证明了一种新型的光磁阶,类似于反铁磁有序材料中自旋的交错结构。我们研究通过组装由金属裂环谐振器和具有高折射率的介电粒子形成的杂原子构成的杂化电磁超表面,它们都支持不同起源的光感应磁偶极子共振。每对(或“分子”)的特征是两个相互作用的磁偶极矩,其距离相关的磁化强度类似于磁性材料中的自旋交换相互作用。通过直接绘制电磁场的结构,我们通过实验证明,不同起源的光感应磁矩之间的强耦合可以使大分子中的磁化方向发生翻转,从而在混合超表面中形成交错的光感应磁矩的反铁磁晶格。

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