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准三维人工自旋体系中的几何失谐与平面三角反铁磁性

Geometrical Frustration and Planar Triangular Antiferromagnetism in Quasi-Three-Dimensional Artificial Spin Architecture.

作者信息

Farhan Alan, Saccone Michael, Petersen Charlotte F, Dhuey Scott, Hofhuis Kevin, Mansell Rhodri, Chopdekar Rajesh V, Scholl Andreas, Lippert Thomas, van Dijken Sebastiaan

机构信息

NanoSpin, Department of Applied Physics, Aalto University School of Science, P.O. Box 15100, FI-00076 Aalto, Finland.

Laboratory for Multiscale Materials Experiments (LMX), Paul Scherrer Institut, 5232 Villigen, Switzerland.

出版信息

Phys Rev Lett. 2020 Dec 31;125(26):267203. doi: 10.1103/PhysRevLett.125.267203.

Abstract

We present a realization of highly frustrated planar triangular antiferromagnetism achieved in a quasi-three-dimensional artificial spin system consisting of monodomain Ising-type nanomagnets lithographically arranged onto a deep-etched silicon substrate. We demonstrate how the three-dimensional spin architecture results in the first direct observation of long-range ordered planar triangular antiferromagnetism, in addition to a highly disordered phase with short-range correlations, once competing interactions are perfectly tuned. Our work demonstrates how escaping two-dimensional restrictions can lead to new types of magnetically frustrated metamaterials.

摘要

我们展示了一种在准三维人工自旋系统中实现的高度受挫平面三角反铁磁性,该系统由光刻排列在深度蚀刻硅衬底上的单畴伊辛型纳米磁体组成。我们证明了,一旦竞争相互作用得到完美调节,这种三维自旋结构除了会导致具有短程关联的高度无序相之外,还能首次直接观测到长程有序的平面三角反铁磁性。我们的工作展示了突破二维限制如何能够产生新型的磁受挫超材料。

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