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表面波辅助多畴磁性结构的自组装

Surface wave assisted self-assembly of multidomain magnetic structures.

作者信息

Snezhko A, Aranson I S, Kwok W-K

机构信息

Materials Science Division, Argonne National Laboratory, 9700 South Cass Avenue, Argonne, Illinois 60439, USA.

出版信息

Phys Rev Lett. 2006 Feb 24;96(7):078701. doi: 10.1103/PhysRevLett.96.078701. Epub 2006 Feb 21.

Abstract

An ensemble of magnetic microparticles at the liquid surface displays novel snakelike self-assembled structures induced by an alternating magnetic field. We demonstrate that these structures are directly related to surface waves in the liquid generated by the collective response of magnetic microparticles to the alternating magnetic field. The segments of the "snake" exhibit long-range antiferromagnetic ordering, while each segment is composed of ferromagnetically aligned chains of microparticles. The structures exhibit magnetic hysteretic behavior with respect to an external in-plane magnetic field and logarithmic relaxation of the remanent magnetic moment.

摘要

液体表面的磁性微粒集合体在交变磁场作用下呈现出新型的蛇形自组装结构。我们证明这些结构与液体中的表面波直接相关,该表面波是由磁性微粒对交变磁场的集体响应所产生的。“蛇”的各段呈现长程反铁磁有序排列,而每一段则由铁磁排列的微粒链组成。这些结构相对于外部平面内磁场表现出磁滞行为以及剩余磁矩的对数弛豫。

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