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非对称铁磁纳米环的磁双稳性与可控反转

Magnetic bistability and controllable reversal of asymmetric ferromagnetic nanorings.

作者信息

Zhu F Q, Chern G W, Tchernyshyov O, Zhu X C, Zhu J G, Chien C L

机构信息

Department of Physics and Astronomy, Johns Hopkins University, Baltimore, Maryland 21218, USA.

出版信息

Phys Rev Lett. 2006 Jan 20;96(2):027205. doi: 10.1103/PhysRevLett.96.027205. Epub 2006 Jan 17.

Abstract

Magnetization reversals through the formation of a vortex state and the rotation of an onion state are two processes with comparable probabilities for symmetric magnetic nanorings with a radius of about 50 nanometers. This magnetic bistability is the manifestation of the competition between the exchange energy and the magnetostatic energy in nanomagnets. The relative probability of the two processes in symmetric nanorings is dictated by the ring geometry and cannot be altered after fabrication. In this work, we report a novel type of nanorings--asymmetric nanorings. By tuning the asymmetry, we can control the fraction of the vortex formation process from about 40% to nearly 100% by utilizing the direction of the external magnetic field. The observed results have been accounted for by the dependence of the domain-wall energy on the local cross-section area for which we have provided theoretical calculations.

摘要

对于半径约为50纳米的对称磁性纳米环,通过形成涡旋态和洋葱态的旋转实现磁化反转是两个概率相当的过程。这种磁双稳性是纳米磁体中交换能与静磁能之间竞争的体现。对称纳米环中这两个过程的相对概率由环的几何形状决定,且在制造后无法改变。在这项工作中,我们报道了一种新型纳米环——非对称纳米环。通过调节不对称性,我们可以利用外部磁场的方向将涡旋形成过程的比例从约40%控制到近100%。我们通过畴壁能量对局部横截面积的依赖性对观察结果进行了解释,并提供了理论计算。

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