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Field-Driven Motion of Ferrofluids in Biaxial Magnetic Nanowire with Inertial Effects

机译:具有惯性效应的双轴磁性纳米线中铁物流体的现场驱动运动

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This work deals with the field-driven motion of magnetic nanofluids in biaxial ferromagnetic nanowire in the presence of inertial effects and crystallographic defects. We obtained the analytical results under the theoretical model of extended Landau-Lifshitz-Gilbert equation comprising the nonlinear dissipation components, viz., dry friction and viscous along with the inertial effects. More specifically, using the regular perturbation expansion technique, we derive an expression for the leading order traveling wave solutions under the action of the small transverse magnetic field.
机译:这项工作涉及在存在惯性效应和晶体缺陷的情况下双轴铁磁纳米线中磁性纳米流体的现场驱动运动。我们在扩展Landau-Lifshitz-Gilbert方程的理论模型下获得了分析结果,包括非线性耗散组件,Ziz,干摩擦和粘性以及惯性效应。更具体地,使用规则的扰动扩展技术,我们在小横向磁场的作用下导出了前导阶行波解决方案的表达。

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