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Emergent magnetic monopole dynamics in macroscopically degenerate artificial spin ice

机译:宏观退化的人造自旋冰中的新兴磁单极动力学

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摘要

Magnetic monopoles, proposed as elementary particles that act as isolated magnetic south and north poles, have long attracted research interest as magnetic analogs to electric charge. In solid-state physics, a classical analog to these elusive particles has emerged as topological excitations within pyrochlore spin ice systems. We present the first real-time imaging of emergent magnetic monopole motion in a macroscopically degenerate artificial spin ice system consisting of thermally activated Ising-type nanomagnets lithographically arranged onto a pre-etched silicon substrate. A real-space characterization of emergent magnetic monopoles within the framework of Debye-Hückel theory is performed, providing visual evidence that these topological defects act like a plasma of Coulomb-type magnetic charges. In contrast to vertex defects in a purely two-dimensional artificial square ice, magnetic monopoles are free to evolve within a divergence-free vacuum, a magnetic Coulomb phase, for which features in the form of pinch-point singularities in magnetic structure factors are observed.
机译:提出作为基本粒子的磁性单极子充当隔离的磁性南极和北极,长期以来作为电荷的磁性类似物吸引了研究兴趣。在固态物理学中,这些难以捉摸的粒子的经典类似物已经作为烧绿石自旋冰系统中的拓扑激发出现。我们提出了宏观退化的人工自旋冰系统中出现的磁单极子运动的第一个实时成像,该系统由热激活的伊辛型纳米磁铁平版印刷到预先蚀刻的硅基板上组成。在Debye-Hückel理论的框架内对出现的磁单极子进行了真实的空间表征,从而提供了视觉证据,证明这些拓扑缺陷的作用类似于库仑型磁电荷的等离子体。与纯二维人造正方形冰中的顶点缺陷相反,磁性单极子在无散度的真空中自由演化,即磁性库仑相,为此观察到磁性结构因子中的夹点奇点形式。

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