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Non-equilibrium dynamics of magnetically anisotropic particles under oscillating fields

机译:振动场下磁各向异性粒子的非平衡动力学

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In this article, we demonstrate how magnetic anisotropy of colloidal particles can give rise to unusual dynamics and controllable rearrangements under time-dependent fields. As an example, we study spherical particles with a radially off-centered net magnetic moment in an oscillating field. Based on complementary data from a numerical simulation of spheres with shifted dipole and experimental observations from particles with hemispherical ferromagnetic coating, it is explained on a two particle basis how this magnetic anisotropy causes nontrivial rotational motion and magnetic reorientation. We further present the behavior of larger ensembles of coated particles. It illustrates the potential for controlled reconfiguration based on the presented two-particle dynamics.
机译:在本文中,我们演示了胶体粒子的磁各向异性如何在时间依赖的场下引起异常的动力学和可控的重排。例如,我们研究在振荡场中具有径向偏心净磁矩的球形粒子。基于位移偶极子球的数值模拟的补充数据以及来自具有半球形铁磁涂层的粒子的实验观察结果,在两个粒子的基础上解释了这种磁各向异性如何导致非平凡的旋转运动和磁重新定向。我们进一步介绍了较大的涂层颗粒整体的行为。它说明了基于提出的两粒子动力学进行受控重构的潜力。

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