Wavefronts Dislocations Measure Topology in Graphene with Defects
Mesoscale and Nanoscale Physics
2023-07-12 v1
Abstract
We present a general method to identify topological materials by studying the local electronic density . More specifically, certain types of defects or spatial textures such as vacancies, turn graphene into a topological material characterised by invariant Chern or winding numbers. We show that these numbers are directly accessible from a dislocation pattern of , resulting from an interference effect induced by topological defects. For non topological defects such as adatoms, this pattern is scrambled by Friedel oscillations absent in topological cases. A Kekule distortion is discussed and shown to be equivalent to a vacancy.
Cite
@article{arxiv.2307.05185,
title = {Wavefronts Dislocations Measure Topology in Graphene with Defects},
author = {Yuval Abulafia and Amit Goft and Nadav Orion and Eric Akkermans},
journal= {arXiv preprint arXiv:2307.05185},
year = {2023}
}
Comments
6 pages and supplementary material