December 2016

Journal

ATOMIC-SCALE OBSERVATION OF STRUCTURAL AND ELECTRONIC ORDERS IN THE LAYERED COMPOUND α-RuCl3

By:
Ziatdinov, Maxim A; Banerjee, Arnab ; Maksov, Artem B; Berlijn, Tom ; Zhou, Wu ; Cao, Huibo ; Yan, Jiaqiang ; Bridges, Craig A; Mandrus, D.; Nagler, Stephen E; Baddorf, Arthur P; Kalinin, Sergei V
Journal Name:
Nature Communications
Page Number:
13774
Volume:
7
Issue Number:
N/A
Publication Date:
December 2016
View DOI Listing:
https://doi.org/10.1038/ncomms13774

Abstract

A pseudospin-1/2 Mott phase on a honeycomb lattice is proposed to host the celebrated two-dimensional Kitaev model which has an elusive quantum spin liquid ground state, and fascinating physics relevant to the development of future templates towards topological quantum bits. Here we report a comprehensive, atomically resolved real-space study by scanning transmission electron and scanning tunnelling microscopies on a novel layered material displaying Kitaev physics, α-RuCl3. Our local crystallography analysis reveals considerable variations in the geometry of the ligand sublattice in thin films of α-RuCl3 that opens a way to realization of a spatially inhomogeneous magnetic ground state at the nanometre length scale. Using scanning tunnelling techniques, we observe the electronic energy gap of ≈0.25 eV and intra-unit cell symmetry breaking of charge distribution in individual α-RuCl3 surface layer. The corresponding charge-ordered pattern has a fine structure associated with two different types of charge disproportionation at Cl-terminated surface.