학술논문

MoTe2: A Type-II Weyl Topological Metal
Document Type
Working Paper
Source
Phys. Rev. Lett. 117, 056805 (2016)
Subject
Condensed Matter - Materials Science
Condensed Matter - Mesoscale and Nanoscale Physics
Language
Abstract
Based on the ab initio calculations, we show that MoTe2, in its low-temperature orthorhombic structure characterized by an X-ray diffraction study at 100 K, realizes 4 type-II Weyl points between the N-th and N+1-th bands, where N is the total number of valence electrons per unit cell. Other WPs and nodal lines between different other bands also appear close to the Fermi level due to a complex topological band structure. We predict a series of strain-driven topological phase transitions in this compound, opening a wide range of possible experimental realizations of different topological semimetal phases. Crucially, with no strain, the number of observable surface Fermi arcs in this material is 2 - the smallest number of arcs consistent with time-reversal symmetry.
Comment: Published version