Single-layer graphene sheets are typically characterized by long-wavelength corrugations (ripples) which can be shown to be at the origin of rather strong potentials with both scalar and vector components. We present an extensive microscopic study, based on a self-consistent Kohn-Sham-Dirac density-functional method, of the carrier-density distribution in the presence of these ripple-induced external fields. We find that spatial density fluctuations are essentially controlled by the scalar component, especially in nearly neutral graphene sheets, and that in-plane atomic displacements are as important as out-of-plane ones. The latter fact is at the origin of a complicated spatial distribution of electron-hole puddles which has no evident cor...
Ideally, graphene may be regarded as a strictly 2-D structure. However, as it exists in a 3-D world,...
We study the changes induced by the effective gauge field due to ripples on the low energy electroni...
International audienceWe report the coexistence of charge puddles and topographic ripples in graphen...
Single-layer graphene sheets are typically characterized by long-wavelength corrugations (ripples) w...
We outline a Kohn-Sham-Dirac density functional theory (DFT) scheme for graphene sheets that treats ...
Contains fulltext : 34821.pdf (author's version ) (Closed access)We discuss variou...
It is widely believed that carrier-density inhomogeneities ("electron-hole puddles") in single-layer...
In an ideal graphene sheet, charge carriers behave as two-dimensional Dirac fermions Topographic co...
The research on atomic scale solid state structures has developed into a highly dy-namic field that ...
Application of an in-plane magnetic field to rippled graphene will make the system be a plane with r...
It is common to describe graphene as ideally flat plane, however there exists both theoretical and e...
At vanishing charge carrier density, graphene on a dielectric substrate exhibits spatial doping inho...
Car-Parronello molecular dynamics simulations of twelve nanosized graphene sheets with a dozen to a ...
Car-Parronello molecular dynamics simulations of twelve nanosized graphene sheets with a dozen to a ...
We grow epitaxial graphene monolayers on Ru(0001) that cover uniformly the substrate over lateral di...
Ideally, graphene may be regarded as a strictly 2-D structure. However, as it exists in a 3-D world,...
We study the changes induced by the effective gauge field due to ripples on the low energy electroni...
International audienceWe report the coexistence of charge puddles and topographic ripples in graphen...
Single-layer graphene sheets are typically characterized by long-wavelength corrugations (ripples) w...
We outline a Kohn-Sham-Dirac density functional theory (DFT) scheme for graphene sheets that treats ...
Contains fulltext : 34821.pdf (author's version ) (Closed access)We discuss variou...
It is widely believed that carrier-density inhomogeneities ("electron-hole puddles") in single-layer...
In an ideal graphene sheet, charge carriers behave as two-dimensional Dirac fermions Topographic co...
The research on atomic scale solid state structures has developed into a highly dy-namic field that ...
Application of an in-plane magnetic field to rippled graphene will make the system be a plane with r...
It is common to describe graphene as ideally flat plane, however there exists both theoretical and e...
At vanishing charge carrier density, graphene on a dielectric substrate exhibits spatial doping inho...
Car-Parronello molecular dynamics simulations of twelve nanosized graphene sheets with a dozen to a ...
Car-Parronello molecular dynamics simulations of twelve nanosized graphene sheets with a dozen to a ...
We grow epitaxial graphene monolayers on Ru(0001) that cover uniformly the substrate over lateral di...
Ideally, graphene may be regarded as a strictly 2-D structure. However, as it exists in a 3-D world,...
We study the changes induced by the effective gauge field due to ripples on the low energy electroni...
International audienceWe report the coexistence of charge puddles and topographic ripples in graphen...