论文标题

对拓扑非平地电子状态的压力效应和lutecium Monobuthide的运输

Pressure effect on the topologically nontrivial electronic state and transport of lutecium monobismuthide

论文作者

Gu1, H., Tang, F., Ruan, Y. -R., Zhang, J. -M., Tang, R. -J., Zhao, W., Zhao, R., Zhang, L., Han, Z. -D., Qian, B., Jiang, X. -F., Fang, Y.

论文摘要

预计稀土单反射剂是非平凡的半准候选者,并显示出压力诱导的超导性。在这里,我们种植了卢比单晶,研究磁化,传输行为和电子带结构,以揭示其在压力下的拓扑半学特征和超导性。在0 GPA时,量子振荡表明在费米水平周围有几个拓扑非平凡的载体袋,其中孔的形状是各向同性的,而电子载体是各向异性的,并且负责角度的磁磁性。压缩后,超导性出现在标题化合物中,显示出与Labi中观察到的相似的压力依赖性。我们的计算表明,电子带结构在低压和高压下分别具有鲁棒性,因此始终保留拓扑特征。此外,卢比中几乎压力无关的状态密度表明,常规的电子 - 音波耦合似乎在超导性中起较小的作用。

Rare-earth monopnictides are predicted to be nontrivial semimetal candidates and show pressure-induced superconductivity. Here, we grow LuBi single crystal and study the magnetization, transport behaviors and electronic band structures to reveal its topological semimetal feature and superconductivity under pressure. At 0 GPa, the quantum oscillations indicate that there are several topologically nontrivial carrier pockets around the Fermi level, among which the hole ones are isotropic in shape, while the electron ones are anisotropic and responsible for the angular magnetoresistance. Upon compression, the superconductivity emerges in the titled compound, showing a similar pressure dependence as that observed in LaBi. Our calculation suggests that the electronic band structures are robust at low- and high-pressure respectively and thus the topological features are always preserved. Besides, the nearly pressure-independent density of state in LuBi indicates that the conventional electron-phonon coupling appears to play a minor role in the superconductivity.

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