Chen Shi-Zhang, Li Siwen, Chen Yuanping, Duan Wenhui
State Key Laboratory of Low Dimensional Quantum Physics, Department of Physics, Tsinghua University, Beijing 100084, China.
Faculty of Science, Jiangsu University, Zhenjiang 212013, Jiangsu, China.
Nano Lett. 2020 Jul 8;20(7):5400-5407. doi: 10.1021/acs.nanolett.0c01786. Epub 2020 Jun 9.
Nodal surface-based topological semimetals (TSMs) are drawing attention due to their unique excitation and plasmon behaviors. However, only nodal flat-surface and nodal sphere TSMs are theoretically proposed due to strict symmetry requirements. Here, we propose that a series of surface-based topological phases can be realized in a tight-binding (TB) model with sublattice symmetry. These topological phases, named as nodal flexible-surface semimetals, include not only nodal surface and nodal sphere TSMs but also novel phases, like nodal tube, nodal crossbar, and nodal hourglass-like surface TSMs. According to the TB model, a family of carbon nanotube networks are then identified as nodal flexible-surface TSMs by first-principles calculations, and the topological phase transitions between these TSMs can be induced by strains. Moreover, the nodal flexible-surface TSMs with intrinsic high density of states at the Fermi level and special drumhead surface states are promising for studying high-temperature superconductors and strong correlation effects.
基于节面的拓扑半金属(TSMs)因其独特的激发和等离子体行为而备受关注。然而,由于严格的对称性要求,理论上仅提出了节面平坦表面和节面球体TSMs。在此,我们提出在具有子晶格对称性的紧束缚(TB)模型中可以实现一系列基于表面的拓扑相。这些拓扑相,命名为节面柔性表面半金属,不仅包括节面表面和节面球体TSMs,还包括新颖的相,如节面管、节面横杆和节面沙漏状表面TSMs。根据TB模型,通过第一性原理计算,一族碳纳米管网络被确定为节面柔性表面TSMs,并且这些TSMs之间的拓扑相变可以由应变诱导。此外,在费米能级具有固有高态密度和特殊鼓面表面态的节面柔性表面TSMs在研究高温超导体和强关联效应方面很有前景。