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一种基于偶极四态Potts模型的可调谐磁性超材料。

A tunable magnetic metamaterial based on the dipolar four-state Potts model.

作者信息

Louis D, Lacour D, Hehn M, Lomakin V, Hauet T, Montaigne F

机构信息

Institut Jean Lamour, CNRS-Université de Lorraine, Nancy, France.

University of California San Diego, Department of Electrical and Computer Engineering, La Jolla, CA, USA.

出版信息

Nat Mater. 2018 Dec;17(12):1076-1080. doi: 10.1038/s41563-018-0199-x. Epub 2018 Oct 29.

Abstract

Metamaterials, tunable artificial materials, are useful playgrounds to investigate magnetic systems. So far, artificial Ising spin systems have revealed features such as emergent magnetic monopoles and charge fragmentation. Here we present a metasystem composed of a lattice of dipolarly coupled nanomagnets. The magnetic spin of each nanomagnet is constrained to lie along a body diagonal, which yields four possible spin states. We show that the magnetic ordering of this metasystem (antiferromagnetic, ferromagnetic or spin ice like) is determined by the spin states orientation relative to the underlying lattice. The dipolar four-state Potts model explains our experimental observations and sheds light on the role of symmetry, as well as short- and long-range dipolar magnetic interactions, in such non-Ising spin systems.

摘要

超材料,即可调谐的人工材料,是研究磁系统的有用平台。到目前为止,人工伊辛自旋系统已经揭示了诸如涌现磁单极子和电荷碎片化等特征。在此,我们展示了一个由偶极耦合纳米磁体晶格组成的元系统。每个纳米磁体的磁自旋被限制沿着体对角线方向,这产生了四种可能的自旋状态。我们表明,这个元系统的磁有序(反铁磁、铁磁或类似自旋冰)由自旋状态相对于底层晶格的取向决定。偶极四态Potts模型解释了我们的实验观察结果,并揭示了对称性以及短程和长程偶极磁相互作用在这种非伊辛自旋系统中的作用。

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