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流体表面上的驱动磁性颗粒:图案辅助表面流动

Driven magnetic particles on a fluid surface: pattern assisted surface flows.

作者信息

Belkin M, Snezhko A, Aranson I S, Kwok W-K

机构信息

Illinois Institute of Technology, 3101 South Dearborn Street, Chicago, Illinois 60616, USA.

出版信息

Phys Rev Lett. 2007 Oct 12;99(15):158301. doi: 10.1103/PhysRevLett.99.158301. Epub 2007 Oct 9.

Abstract

Magnetic microparticles suspended on the liquid-air interface and subjected to an alternating magnetic field exhibit spontaneous formation of dynamic localized snake patterns. These patterns are accompanied by four large-scale hydrodynamic vortices located at the opposite ends of the snake patterns. We report detailed studies of these large-scale vortices and their relationship to the collective response of magnetic particles in the presence of an alternating magnetic field. We present a model based on the amplitude equation for surface waves coupled to the large-scale hydrodynamic mean flow equation. The model describes both the formation of the dynamic snake patterns and the induced structure of the experimentally observed hydrodynamic flows.

摘要

悬浮在液-气界面并受到交变磁场作用的磁性微粒会自发形成动态局域蛇形图案。这些图案伴随着位于蛇形图案相对两端的四个大规模流体动力学涡旋。我们报告了对这些大规模涡旋及其在交变磁场存在下与磁性粒子集体响应关系的详细研究。我们提出了一个基于与大规模流体动力学平均流方程耦合的表面波振幅方程的模型。该模型描述了动态蛇形图案的形成以及实验观察到的流体动力学流的诱导结构。

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