The recursive Green's function method for graphene
We describe how to apply the recursive Green's function method to the computation of
electronic transport properties of graphene sheets and nanoribbons in the linear response …
electronic transport properties of graphene sheets and nanoribbons in the linear response …
Disorder effects of vacancies on the electronic transport properties of realistic topological insulator nanoribbons: The case of bismuthene
The robustness of topological materials against disorder and defects is presumed but has
not been demonstrated explicitly in realistic systems. In this work, we use state-of-the-art …
not been demonstrated explicitly in realistic systems. In this work, we use state-of-the-art …
Effect of zigzag and armchair edges on the electronic transport in single-layer and bilayer graphene nanoribbons with defects
We study electronic transport in monolayer and bilayer graphene with single and many short-
range defects focusing on the role of edge termination (zigzag versus armchair). Within the …
range defects focusing on the role of edge termination (zigzag versus armchair). Within the …
Electronic transport in disordered nanoribbons
We study the electronic structure and transport properties of zigzag and armchair monolayer
molybdenum disulfide nanoribbons using an 11-band tight-binding model that accurately …
molybdenum disulfide nanoribbons using an 11-band tight-binding model that accurately …
Soliton fractional charges in graphene nanoribbon and polyacetylene: similarities and differences
SRE Yang - Nanomaterials, 2019 - mdpi.com
An introductory overview of current research developments regarding solitons and fractional
boundary charges in graphene nanoribbons is presented. Graphene nanoribbons and …
boundary charges in graphene nanoribbons is presented. Graphene nanoribbons and …
Mutual information and correlations across topological phase transitions in topologically ordered graphene zigzag nanoribbons
Graphene zigzag nanoribbons, initially in a topologically ordered state, undergo a
topological phase transition into crossover phases distinguished by quasi-topological order …
topological phase transition into crossover phases distinguished by quasi-topological order …
Topologically ordered zigzag nanoribbon: fractional edge charge, spin-charge separation, and ground-state degeneracy
We numerically compute the density of states (DOS) of interacting disordered zigzag
graphene nanoribbon (ZGNR) having midgap states showing e/2 fractional edge charges …
graphene nanoribbon (ZGNR) having midgap states showing e/2 fractional edge charges …
Phase diagram and crossover phases of topologically ordered graphene zigzag nanoribbons: role of localization effects
We computed the phase diagram of zigzag graphene nanoribbons as a function of on-site
repulsion, do**, and disorder strength. The topologically ordered phase undergoes …
repulsion, do**, and disorder strength. The topologically ordered phase undergoes …
Valley polarized current and resonant electronic transport in a nonuniform zigzag nanoribbon
Using the tight-binding approach we study the electronic transport in a MoS 2 zigzag ribbon
with a spatially varying potential profile. Considering a ribbon with a smooth potential step in …
with a spatially varying potential profile. Considering a ribbon with a smooth potential step in …
Soliton fractional charge of disordered graphene nanoribbon
We investigate the properties of the gap-edge states of half-filled interacting disordered
zigzag graphene nanoribbons, and find that the midgap states can display a quantized …
zigzag graphene nanoribbons, and find that the midgap states can display a quantized …