Evidence of topological edge states in a superconducting nonsymmorphic nodal-line semimetal
arXiv:2105.03285 · doi:10.1103/PhysRevB.103.L201109
Abstract
Topological materials host fascinating low dimensional gapless states at the boundary. As a prominent example, helical topological edge states (TESs) of two-dimensional topological insulators (2DTIs) and their stacked three-dimensional (3D) equivalent, weak topological insulators (WTIs), have sparked research enthusiasm due to their potential application in the next generation of electronics/spintronics with low dissipation. Here, we propose layered superconducting material CaSn as a WTI with nontrivial Z2 as well as nodal line semimetal protected by crystalline non-symmorphic symmetry. Our systematic angle-resolved photoemission spectroscopy (ARPES) investigation on the electronic structure exhibits excellent agreement with the calculation. Furthermore, scanning tunnelling microscopy/spectroscopy (STM/STS) at the surface step edge shows signatures of the expected TES. These integrated evidences from ARPES, STM/STS measurement and corresponding ab initio calculation strongly support the existence of TES in the non-symmorphic nodal line semimetal CaSn, which may become a versatile material platform to realize multiple exotic electronic states as well as topological superconductivity.
References in corpus (6)
- Quantum Spin Hall Insulator State in HgTe Quantum Wells
- Topological Insulators with Inversion Symmetry
- Observation of the Quantum Spin Hall Effect up to 100 Kelvin in a Monolayer Crystal
- Wannier representation of Z_2 topological insulators
- Dirac Line-nodes and Effect of Spin-orbit Coupling in Non-symmorphic Critical Semimetal MSiS (M=Hf, Zr)
- Prediction of weak topological insulators in layered semiconductors
Cited by in corpus (4)
- Higher-order topological superconductors based on weak topological insulators
- Topology hierarchy of transition metal dichalcogenides built from quantum spin Hall layers
- Machine learning search for stable binary Sn alloys with Na, Ca, Cu, Pd, and Ag
- Nontrivial topological states in BaSn5 superconductor probed by de Haas-van Alphen quantum oscillations