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Perfect Topological Metal CrB

机译:完美的拓扑金属CRB

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摘要

Topological materials with band-crossing points exhibit interesting electronic characteristics and have special applications in electronic devices. However, to further facilitate the experimental detection of the signatures of these band crossings, topological materials with a large linear energy range around the band-crossing points need to be found, which is challenging. Here, via first-principle approaches, we report that the previously prepared P6/mmm-type CrB2 material is a topological metal with one pair of 1D band-crossing points, that is, nodal lines, in the kz= 0 plane, and one pair of 0D band-crossing points, that is, triple points, along the A–Γ–A’ paths. Remarkably, around these band-crossing points, a large linear energy range (larger than 1 eV) was found and the value was much larger than that found in previously studied materials with a similar linear crossing. The pair of nodal lines showed obvious surface states, which show promise for experimental detection. The effect of the spin–orbit coupling on the band-crossing points was examined and the gaps induced by spin–orbit coupling were found to be up to 69 meV. This material was shown to be phase stable in theory and was synthesized in experiments, and is therefore a potential material for use in investigating nodal lines and triple points.
机译:具有带交叉点的拓扑材料表现出有趣的电子特性,并在电子设备中具有特殊应用。然而,为了进一步促进这些带交叉的签名的实验检测,需要找到具有围绕带交叉点的大线性能量范围的拓扑材料,这是具有挑战性的。在这里,通过第一原理方法,我们报告说,先前制备的P6 / MMM型CRB2材料是一种拓扑金属,具有一对1D带交叉点,即KZ中的节点线= 0平面,以及一对0d带交叉点,即,沿A-γ-A'路径的三重点。值得注意的是,围绕这些带交叉点,发现大线性能量范围(大于1eV),并且该值远大于先前研究的材料中具有类似线性交叉的材料。这对节点线显示了明显的表面状态,显示了实验检测的承诺。检查了旋转轨道耦合对带交叉点的影响,并发现旋转轨道偶联诱导的间隙最高可达69meV。该材料显示在理论上是相稳定的,并在实验中合成,因此是用于研究卵石线和三点的潜在​​材料。

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