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Artificial 'spin ice' in a geometrically frustrated lattice of nanoscale ferromagnetic islands

机译:纳米铁磁岛的几何受挫晶格中的人造“自旋冰”

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Frustration, defined as a competition between interactions such that not all of them can be satisfied, is important in systems ranging from neural networks to structural glasses. Geometrical frustration, which arises from the topology of a well-ordered structure rather than from disorder, has recently become a topic of considerable interest(1). In particular, geometrical frustration among spins in magnetic materials can lead to exotic low-temperature states(2), including 'spin ice', in which the local moments mimic the frustration of hydrogen ion positions in frozen water(3-6). Here we report an artificial geometrically frustrated magnet based on an array of lithographically fabricated single-domain ferromagnetic islands. The islands are arranged such that the dipole interactions create a two-dimensional analogue to spin ice. Images of the magnetic moments of individual elements in this correlated system allow us to study the local accommodation of frustration. We see both ice-like short-range correlations and an absence of long-range correlations, behaviour which is strikingly similar to the low-temperature state of spin ice. These results demonstrate that artificial frustrated magnets can provide an uncharted arena in which the physics of frustration can be directly visualized.
机译:挫折感被定义为交互作用之间的竞争,使得并非所有交互作用都可以满足,这种挫败感在从神经网络到结构玻璃的各种系统中都很重要。几何上的挫伤是由有序结构的拓扑而不是无序引起的,最近已成为引起人们极大兴趣的主题(1)。特别是,磁性材料中自旋之间的几何受挫会导致奇特的低温状态(2),包括“自旋冰”,其中局部力矩模仿了冷冻水中氢离子位置的受挫(3-6)。在这里,我们报告了基于光刻制造的单畴铁磁岛阵列的人造几何受挫磁体。布置这些岛使得偶极子相互作用产生二维类似物以旋转冰。在这个相关系统中单个元素的磁矩的图像使我们能够研究挫折的局部适应性。我们看到冰状的短程相关性和远距相关性的缺失,其行为与旋转冰的低温状态极为相似。这些结果表明,人工沮丧的磁体可以提供一个未知的领域,在其中可以直观地看到沮丧的物理学。

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