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Discovery of topological Weyl fermion lines and drumhead surface states in a room temperature magnet

机译:在室温磁铁中发现拓扑Weyl费米子线和鼓面表面状态

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Topological matter is known to exhibit unconventional surface states and anomalous transport owing to unusual bulk electronic topology. In this study, we use photoemission spectroscopy and quantum transport to elucidate the topology of the room temperature magnet Co2MnGa. We observe sharp bulk Weyl fermion line dispersions indicative of nontrivial topological invariants present in the magnetic phase. On the surface of the magnet, we observe electronic wave functions that take the form of drumheads, enabling us to directly visualize the crucial components of the bulk-boundary topological correspondence. By considering the Berry curvature field associated with the observed topological Weyl fermion lines, we quantitatively account for the giant anomalous Hall response observed in this magnet. Our experimental results suggest a rich interplay of strongly interacting electrons and topology in quantum matter.
机译:已知由于异常的体电子拓扑结构,拓扑物质表现出非常规的表面状态和异常传输。在这项研究中,我们使用光发射光谱和量子传输来阐明室温磁体Co2MnGa的拓扑。我们观察到尖锐的Weyl费米子线分布,表明磁相中存在非平凡的拓扑不变量。在磁铁的表面上,我们观察到了呈鼓面形式的电子波函数,从而使我们能够直接可视化体边界拓扑对应关系的关键组成部分。通过考虑与观测到的拓扑韦尔费米子线相关的贝里曲率场,我们定量地说明了在该磁体中观测到的巨大异常霍尔响应。我们的实验结果表明,强相互作用的电子与量子物质中的拓扑之间存在丰富的相互作用。

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