共振(粒子物理)
微磁学
铁磁共振
材料科学
自旋电子学
曲率
凝聚态物理
半径
曲率半径
核磁共振
纳米管
磁共振成像
旋转动力学
磁铁
光学
纳米线
测距
磁场
正常模式
自旋波
动力学(音乐)
磁化动力学
分子物理学
纳米技术
模式(计算机接口)
纳米结构
物理
自旋(空气动力学)
碳纳米管
磁存储器
纵横比(航空)
作者
Eduardo Saavedra,Carlos Saji,David Laroze,S. Allende,Mario A. Castro
摘要
Magnetic bimerons, in-plane analogs of skyrmions, exhibit unique spin-wave dynamics arising from their broken rotational symmetry. Here, we investigate the curvature-dependent spin-wave resonance of bimerons stabilized in cylindrical magnetic nanotubes by means of micromagnetic simulations. Using frequency-domain analysis, we characterize the equilibrium textures, dynamic susceptibility, and spatial profiles of the eigenmodes. We show that the bimeron breathing-like resonance mode shifts systematically to lower frequencies as the nanotube radius increases, ranging from ∼8 GHz in highly curved tubes to ∼3.7 GHz in the flat limit. The resonance is accompanied by distinct spatial oscillations of the magnetization. These findings demonstrate that curvature serves as an effective geometrical design parameter for engineering the dynamical properties of bimerons and open avenues for exploiting their spin-wave resonances in advanced magnonic and spintronic architectures.
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