Two-dimensional chiral stacking orders in quasi-one-dimensional charge density waves
arXiv:2009.13298 · doi:10.1103/PhysRevB.102.121408
Abstract
Chirality manifests in various forms in nature. However, there is no evidence of the chirality in one-dimensional charge density wave (CDW) systems. Here, we have explored the chirality among quasi-one-dimensional CDW ground states with the aid of scanning tunneling microscopy, symmetry analysis, and density functional theory calculations. We discovered three distinct chiralities emerging in the form of two-dimensional chiral stacking orders composed of degenerate CDW ground states: right-, left-, and nonchiral stacking orders. Such chiral stacking orders correspond to newly introduced chiral winding numbers. Furthermore, we observed that these chiral stacking orders are intertwined with chiral vortices and chiral domain walls, which play a crucial role in engineering the chiral stacking orders. Our findings suggest that the unexpected chiral stacking orders can open a way to investigate the chirality in CDW systems, which can lead to diverse phenomena such as circular dichroism depending on chirality.
5 pages, 4 figures + Supplemental Material, accepted in Phys. Rev. B, https://journals.aps.org/prb/accepted/7d073Ye7Fc510c7178d74b69816582e083b0a5dd0
References in corpus (6)
- Optical detection and manipulation of spontaneous gyrotropic electronic order in a transition-metal dichalcogenide semimetal
- Aperiodic topological order in the domain configurations of functional materials
- Topological Solitons versus Non-Solitonic Phase Defects in Quasi-One-Dimensional Charge Density Wave
- Switching Chiral Solitons for Algebraic Operation of Topological Quaternary Digits
- Driving force of phase transition in Indium nanowires on Si(111)
- Equivalence of Electronic and Mechanical Stresses in Structural Phase Stabilization: A Case Study of Indium Wires on Si(111)