首页|考虑Rashba效应及非线性耗散效应的混合压电-磁致伸缩结构中的应变诱导快速磁畴壁运动

考虑Rashba效应及非线性耗散效应的混合压电-磁致伸缩结构中的应变诱导快速磁畴壁运动

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本文主要目的是分析磁致伸缩材料薄层中磁畴壁的运动,这类材料可以完美附着在厚压电器的上表面。我们的分析中考虑了一类横观各向同性的六角形亚类磁致伸缩材料,这些材料展示了结构反转非对称性。为此,我们利用了一维扩展Landau-Lifshitz-Gilbert方程描述在磁场、自旋极化电流、磁弹性效应、磁晶各向异性、Rashba场和非线性干摩擦耗散等因素影响下的磁化动力学。通过标准的行波近似法,我们推导出了最相关动态特性的解析表达式:速度、迁移率、阈值、击穿和畴壁的传播方向,包括稳态和进动动态状态。我们的解析研究提供了如何有效控制磁畴壁运动的参数的见解。解析结果的数值模拟与近期的观测结果定性上一致。
Strain-induced fast domain wall motion in hybrid piezoelectric-magnetostrictive structures with Rashba and nonlinear dissipative effects
The prime objective of this work is to analyze the motion of magnetic domain walls(DWs)in a thin layer of magnetostrictive material that is perfectly attached to the upper surface of a thick piezoelectric actuator.In our analysis,we consider a transversely isotropic hexagonal subclass of magnetostrictive materials that demonstrate structural inversion asymmetry.To this aim,we utilize the one-dimensional extended Landau-Lifshitz-Gilbert equations,which describe the magnetization dynamics under the influence of various factors such as magnetic fields,spin-polarized electric currents,magnetoelastic effects,magnetocrystalline anisotropy,Rashba fields,and nonlinear dry-friction dissipation.By employing the standard traveling wave ansatz,we derive an analytical expression of the most relevant dynamic features:velocity,mobility,threshold,breakdown,and propagation direction of the DWs in both steady and precessional dynamic regimes.Our analytical investigation provides insights into how effectively the considered parameters can control the DW motion.Finally,numerical illustrations of the obtained analytical results show a qualitative agreement with the recent observations.

Domain wallMagnetoelastic fieldExtended Landau-Lifshitz-Gilbert equationDry-friction dissipationRashba effect

Sumit Maity、Sarabindu Dolui、Sharad Dwivedi

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Department of Mathematics,School of Sciences,National Institute of Technology Andhra Pradesh,Tadepalligudem 534101,India

Domain wall Magnetoelastic field Extended Landau-Lifshitz-Gilbert equation Dry-friction dissipation Rashba effect

2024

力学学报(英文版)

力学学报(英文版)

CSTPCD
影响因子:0.363
ISSN:0567-7718
年,卷(期):2024.40(9)