Tu Xin-Hai, Bo Tao, Liu Peng-Fei, Yin Wen, Hao Ning, Wang Bao-Tian
Institute of High Energy Physics, Chinese Academy of Sciences (CAS), Beijing 100049, China.
Spallation Neutron Source Science Center, Institute of High Energy Physics, Chinese Academy of Sciences, Dongguan 523803, China.
Phys Chem Chem Phys. 2022 Mar 30;24(13):7893-7900. doi: 10.1039/d1cp05685a.
Based on first-principles calculations, we predict five global stable molybdenum phosphorus compounds in the pressure range of 0-300 GPa. All of them display superconductivity with different transition temperatures. Meanwhile, we find that a metastable crystal hex-MoP, crystallized in a noncentrosymmetric structure, is a double-Weyl semimetal and the Weyl point is in the - path. The long Fermi arcs and the topological surface states, which can be observed by angle-resolved photoemission spectroscopy, emerge at the (100) surface below the Fermi level. Furthermore, we find that the superconductivity in hex-MoP can be enhanced by carrier doping. Due to the breaking of inversion symmetry, the unconventional spin-triplet pairing coexists with spin-singlet pairing in channel . Based on our theoretical model, there are the superconducting band gaps in both pairings. Our work provides a new platform of hex-MoP for studying both topological double-Weyl semimetal and superconductivity.
基于第一性原理计算,我们预测了在0 - 300吉帕压力范围内的五种全球稳定的钼磷化合物。它们都表现出不同转变温度的超导性。同时,我们发现一种以非中心对称结构结晶的亚稳晶体六方 - MoP是一种双外尔半金属,且外尔点位于 - 路径上。通过角分辨光电子能谱可观测到的长费米弧和拓扑表面态出现在费米能级以下的(100)表面。此外,我们发现六方 - MoP中的超导性可通过载流子掺杂增强。由于空间反演对称性的破缺,非传统的自旋三重态配对与通道中的自旋单重态配对共存。基于我们的理论模型,两种配对中都存在超导带隙。我们的工作为研究拓扑双外尔半金属和超导性提供了一个新的六方 - MoP平台。