We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage, and temperature. We find that a magnetic field systematically leads to an increase in the conductance on a scale of a few tesla. This phenomenon is accompanied by a decrease in the energy scales associated to charging effects, and to hopping processes probed by temperature-dependent measurements. All the observations can be interpreted consistently in terms of strong-localization effects caused by the large disorder present, and exclude that the insulating state observed in nanoribbons can be explained solely in terms of a true gap between valence and conduction bands
The electronic and transport properties of monolayer and AB-stacked bilayer zigzag graphene nanoribb...
We have investigated the magnetoresistance of lithographically prepared single-layer graphene nanori...
International audienceThrough magnetotransport measurements, we investigate ultrasmooth graphene bil...
We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage,...
We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage,...
Graphene has unique electronic properties1,2, and graphene nanoribbons are of particular interest be...
We study the evolution of the two-terminal conductance plateaus with a magnetic field for armchair g...
We study the evolution of the two-terminal conductance plateaus with a magnetic field for armchair g...
We study the evolution of the two-terminal conductance plateaus with a magnetic field for armchair g...
We study the evolution of the two-terminal conductance plateaus with a magnetic field for armchair g...
In the present PhD thesis, we study the electronic transport properties of grapheme nanoribbons unde...
We study the evolution of the two-terminal conductance plateaus with a magnetic field for armchair g...
We study the evolution of the two-terminal conductance plateaus with a magnetic field for armchair g...
In the present PhD thesis, we study the electronic transport properties of grapheme nanoribbons unde...
In the present PhD thesis, we study the electronic transport properties of grapheme nanoribbons unde...
The electronic and transport properties of monolayer and AB-stacked bilayer zigzag graphene nanoribb...
We have investigated the magnetoresistance of lithographically prepared single-layer graphene nanori...
International audienceThrough magnetotransport measurements, we investigate ultrasmooth graphene bil...
We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage,...
We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage,...
Graphene has unique electronic properties1,2, and graphene nanoribbons are of particular interest be...
We study the evolution of the two-terminal conductance plateaus with a magnetic field for armchair g...
We study the evolution of the two-terminal conductance plateaus with a magnetic field for armchair g...
We study the evolution of the two-terminal conductance plateaus with a magnetic field for armchair g...
We study the evolution of the two-terminal conductance plateaus with a magnetic field for armchair g...
In the present PhD thesis, we study the electronic transport properties of grapheme nanoribbons unde...
We study the evolution of the two-terminal conductance plateaus with a magnetic field for armchair g...
We study the evolution of the two-terminal conductance plateaus with a magnetic field for armchair g...
In the present PhD thesis, we study the electronic transport properties of grapheme nanoribbons unde...
In the present PhD thesis, we study the electronic transport properties of grapheme nanoribbons unde...
The electronic and transport properties of monolayer and AB-stacked bilayer zigzag graphene nanoribb...
We have investigated the magnetoresistance of lithographically prepared single-layer graphene nanori...
International audienceThrough magnetotransport measurements, we investigate ultrasmooth graphene bil...