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Fragmentation of magnetism in artificial kagome dipolar spin ice

机译:人造kagome偶极自旋冰中磁性的破碎

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摘要

Geometrical frustration in magnetic materials often gives rise to exotic, low-temperature states of matter, such as the ones observed in spin ices. Here we report the imaging of the magnetic states of a thermally active artificial magnetic ice that reveal the fingerprints of a spin fragmentation process. This fragmentation corresponds to a splitting of the magnetic degree of freedom into two channels and is evidenced in both real and reciprocal space. Furthermore, the internal organization of both channels is interpreted within the framework of a hybrid spin–charge model that directly emerges from the parent spin model of the kagome dipolar spin ice. Our experimental and theoretical results provide insights into the physics of frustrated magnets and deepen our understanding of emergent fields through the use of tailor-made magnetism.
机译:磁性材料的几何受挫通常会引起奇特的低温物质状态,例如在自旋冰中观察到的状态。在这里,我们报告了热活性人造磁冰的磁态成像,揭示了自旋碎裂过程的指纹。这种分裂对应于将磁自由度分为两个通道,并在实空间和倒数空间中得到证明。此外,在混合自旋电荷模型的框架内解释了两个通道的内部组织,该模型直接从kagome双极自旋冰的母体自旋模型中出现。我们的实验和理论结果提供了对受挫磁体的物理学的见解,并通过使用量身定制的磁场加深了对新兴磁场的理解。

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