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Field-Driven Motion of Ferrofluids in Ferromagnetic Nanowire Under The Influence of Inertial Effects

机译:惯性效应影响下铁磁性纳米线中铁物质流体的现场驱动运动

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In this article, we investigate the field-driven motion of magnetic fluids (ferrofluids) in ferromagnetic nanowire under the influence of its own inertia. We establish the results in the framework of modified Landau-Lifschitz-Gilbert equation of micromagnetism which comprise the nonlinear dissipation factors like dry-friction and viscous. We delineate the motion in both the dynamical regimes namely the steady-state and the precessional. In the end, the physical significance of the obtained results is discussed with an aid of numerical analysis.
机译:在本文中,我们在其自身惯性的影响下研究了铁磁性纳米线中磁流体(铁磁石)的磁流动运动运动。我们建立了微量磁性改性Landau-Lifschitz-Gilbert方程的框架的结果,其包括干摩擦和粘性等非线性耗散因子。我们描绘了动态制度的运动,即稳态和生品。最后,借助数值分析讨论了所得结果的物理意义。

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