论文标题

拓扑和淋巴结超导体kagome镁分子

Topological and nodal superconductor kagome magnesium triboride

论文作者

An, Yipeng, Chen, Juncai, Wang, Zhengxuan, Li, Jie, Gong, Shijing, Ma, Chunlan, Wang, Tianxing, Jiao, Zhaoyong, Wu, Ruqian, Hu, Jiangping, Liu, Wuming

论文摘要

最近,Kagome化合物激发了人们的兴趣,并取得了巨大的进步,例如在超导性和拓扑领域。在这里,我们可以通过外部应力预测具有计算出的TC〜12.2 K和TC〜15.4 K的不同Kagome Triboride(MGB3)超导体,这是所报道的各种Kagome型超导体中潜在最高的。我们揭示了其各种异国情调的物理特性,包括范霍夫(Van Hove)的奇异性,平面,多个狄拉克点和非平凡的拓扑结构。该系统可以通过两种波段模型来描述,在费米表面上具有高度各向异性的超导差距。最近开发的对称指标方法揭示了其拓扑和淋巴结超导性的性质。我们的结果表明,MGB3可以是研究Kagome结构中的外来物理的新平台,并铺平了一种寻找具有XY3型Kagome晶格的更多超导体和拓扑材料的方法。

Recently the kagome compounds have inspired enormous interest and made some great progress such as in the field of superconductivity and topology. Here we predict a different kagome magnesium triboride (MgB3) superconductor with a calculated Tc ~12.2 K and Tc ~15.4 K by external stress, the potentially highest among the reported diverse kagome-type superconductors. We reveal its various exotic physical properties including the van Hove singularity, flat-band, multiple Dirac points, and nontrivial topology. The system can be described by a two-band model with highly anisotropic superconducting gaps on Fermi surfaces. Its topological and nodal superconducting nature is unveiled by a recently developed symmetry indicators method. Our results suggest that MgB3 can be a new platform to study exotic physics in the kagome structure, and pave a way to seek for more superconductors and topological materials with XY3-type kagome lattice.

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