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Multiple Dirac cones at the surface of the topological metal LaBi

机译:拓扑金属LaBi表面上的多个Dirac锥

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摘要

The rare-earth monopnictide LaBi exhibits exotic magneto-transport properties, including an extremely large and anisotropic magnetoresistance. Experimental evidence for topological surface states is still missing although band inversions have been postulated to induce a topological phase in LaBi. In this work, we have revealed the existence of surface states of LaBi through the observation of three Dirac cones: two coexist at the corners and one appears at the centre of the Brillouin zone, by employing angle-resolved photoemission spectroscopy in conjunction with ab initio calculations. The odd number of surface Dirac cones is a direct consequence of the odd number of band inversions in the bulk band structure, thereby proving that LaBi is a topological, compensated semimetal, which is equivalent to a time-reversal invariant topological insulator. Our findings provide insight into the topological surface states of LaBi’s semi-metallicity and related magneto-transport properties.
机译:稀土单肽LaBi具有奇异的磁传输特性,包括极大的各向异性磁阻。尽管据推测能带反转会在LaBi中诱发拓扑相,但仍缺乏有关拓扑表面状态的实验证据。在这项工作中,我们通过观察三个狄拉克锥,揭示了LaBi表面状态的存在:两个角共存,一个出现在布里渊区的中心,这是通过使用角度分辨光发射光谱结合从头算起的。计算。表面狄拉克锥的奇数是体带结构中带反转的奇数的直接结果,从而证明LaBi是一种拓扑补偿的半金属,等效于时间反向不变拓扑绝缘体。我们的发现为洞悉LaBi的半金属拓扑表面状态和相关的磁传输特性提供了见识。

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