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Investigation of Left-Handed Behavior in Ferromagnetic Cobalt Magnetic Vortex Structure Using Spin-Wave Resonances

机译:利用旋转波浪共振调查铁磁性钴磁涡结构中的左手行为

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摘要

Terahertz spintronics is an emerging field that bridges the boundary between magnetism and photonics, which make the magnetic material suitable for photonic applications. In this article, terahertz spin-wave resonances are used to investigate the effective permeability of left-handed behavior in an array of cobalt nanomagnetic vortices. The ultrafast magnetization and the toroidal moment of the cobalt nanomagnetic vortices play a major role in reducing losses in the left-handed metamaterial. The ultrafast magnetization dynamics of an array of cobalt nanomagnetic vortices are studied both analytically and numerically, and the results are used to study the variation of permeability as a function of frequency in the terahertz range.
机译:Terahertz SpintRonics是一种新兴领域,它桥梁桥梁之间的边界,这使得适用于光子应用的磁性材料。在本文中,太赫兹旋转波共振用于研究左旋行为在钴纳米磁性阵列中的有效渗透性。钴纳米磁性液体的超快磁化和环形时刻在减少左手超材料中的损失方面发挥了重要作用。在分析和数值上研究了钴纳米磁性涡旋阵列的超快磁化动态,结果用于研究渗透率的变化在太赫兹范围内的频率。

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