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Presence of exotic electronic surface states in LaBi and LaSb

机译:LaBi和LaSb中存在奇异的电子表面态

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Extremely high magnetoresistance (XMR) in the lanthanum monopnictides LaX (X = Sb, Bi) has recently attracted interest in these compounds as candidate topological materials. However, their perfect electron-hole compensation provides an alternative explanation, so the possible role of topological surface states requires verification through direct observation. Our angle-resolved photoemission spectroscopy data reveal multiple Dirac-like surface states near the Fermi level in both materials. Intriguingly, we have observed circular dichroism in both surface and near-surface bulk bands. Thus the spin-orbit-coupling-induced orbital and spin angular momentum textures may provide a mechanism to forbid backscattering in zero field, suggesting that surface and near-surface bulk bands may contribute strongly to XMR in LaX. The extremely simple rocksalt structure of these materials and the ease with which high-quality crystals can be prepared suggest that they may be an ideal platform for further investigation of topological matter.
机译:镧镧系元素LaX(X = Sb,Bi)中极高的磁阻(XMR)最近引起了人们对这些化合物作为候选拓扑材料的兴趣。但是,它们的完美电子空穴补偿提供了另一种解释,因此拓扑表面状态的可能作用需要通过直接观察来验证。我们的角度分辨光发射光谱数据揭示了两种材料中费米能级附近的多个狄拉克样表面态。有趣的是,我们在表面和近表面的体带中都观察到了圆二色性。因此,自旋轨道耦合引起的轨道和自旋角动量纹理可以提供一种机制,以禁止在零场中向后散射,这表明表面和近表面的体能带可能对LaX中的XMR产生重要作用。这些材料的岩盐结构极其简单,并且可以轻松制备高质量的晶体,这表明它们可能是进一步研究拓扑物质的理想平台。

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