We investigate the effect of a scanning gate tip on the nonlinear quantum transport properties of nanostructures. Generally, we predict that the symmetry of the current-voltage characteristic in reflection-symmetric samples is broken by a tip-induced rectifying conductance correction. Moreover, in the case of a quantum point contact (QPC), the tip-induced rectification term becomes dominant as compared to the change of the linear conductance at large tip-QPC distances. Calculations for a weak tip probing a QPC modeled by an abrupt constriction show that these effects are experimentally observable
We exploit the biased tip of a scanning gate microscope to induce a controlled backscattering betwee...
La technique de la microscopie à grille de balayage (SGM) consiste à mesurer la conductance d'un gaz...
We developed a formalism within the linear-response theory to investigate the transport through a qu...
We investigate the effect of a scanning gate tip on the nonlinear quantum transport properties of na...
6 pages, 4 figures, revised and extended final versionInternational audienceWe investigate the effec...
A systematic theory of the conductance measurements of noninvasive (weak probe) scanning gate micros...
The conductance of graphene nanoribbons and nanoconstrictions under the effect of a scanning gate mi...
International audienceScanning gate microscopy (SGM) images from measurements made in the vicinity o...
Using the recursive Green's-function technique, we study the coherent electron conductance of a quan...
International audienceWe show that scanning gate microscopy can be used for probing electron-electro...
Tailored electrostatic potentials are at the heart of semiconductor nanostructures. We present measu...
This work is concerned with the theoretical description of the Scanning Gate Microscopy (SGM) in gen...
An open resonator fabricated in a two-dimensional electron gas is used to explore the transition fro...
We demonstrate a scanning gate grid measurement technique consisting in measuring the conductance of...
We present conductance measurements of a ballistic circular cavity influenced by a scanning gate. In...
We exploit the biased tip of a scanning gate microscope to induce a controlled backscattering betwee...
La technique de la microscopie à grille de balayage (SGM) consiste à mesurer la conductance d'un gaz...
We developed a formalism within the linear-response theory to investigate the transport through a qu...
We investigate the effect of a scanning gate tip on the nonlinear quantum transport properties of na...
6 pages, 4 figures, revised and extended final versionInternational audienceWe investigate the effec...
A systematic theory of the conductance measurements of noninvasive (weak probe) scanning gate micros...
The conductance of graphene nanoribbons and nanoconstrictions under the effect of a scanning gate mi...
International audienceScanning gate microscopy (SGM) images from measurements made in the vicinity o...
Using the recursive Green's-function technique, we study the coherent electron conductance of a quan...
International audienceWe show that scanning gate microscopy can be used for probing electron-electro...
Tailored electrostatic potentials are at the heart of semiconductor nanostructures. We present measu...
This work is concerned with the theoretical description of the Scanning Gate Microscopy (SGM) in gen...
An open resonator fabricated in a two-dimensional electron gas is used to explore the transition fro...
We demonstrate a scanning gate grid measurement technique consisting in measuring the conductance of...
We present conductance measurements of a ballistic circular cavity influenced by a scanning gate. In...
We exploit the biased tip of a scanning gate microscope to induce a controlled backscattering betwee...
La technique de la microscopie à grille de balayage (SGM) consiste à mesurer la conductance d'un gaz...
We developed a formalism within the linear-response theory to investigate the transport through a qu...