International audienceThis paper presents an overview of scanning-gate microscopy applied to the imaging of electron transport through buried semiconductor nanostructures. After a brief description of the technique and of its possible artifacts, we give a summary of some of its most instructive achievements found in the literature and we present an updated review of our own research. It focuses on the imaging of GaInAs-based quantum rings both in the low magnetic field Aharonov-Bohm regime and in the high-field quantum Hall regime. In all of the given examples, we emphasize how a local-probe approach is able to shed new, or complementary, light on transport phenomena which are usually studied by means of macroscopic conductance measurements
We image charge transport in the quantum Hall effect using a scanning charge ac-cumulation microscop...
La microscopie de grille à balayage (SGM pour Scanning GateMicroscopy), développée à la fin des anné...
Scanning-gate imaging of semiconductor quantum dots (QDs) promises access to probability distributio...
International audienceThis paper presents an overview of scanning-gate microscopy applied to the ima...
This paper presents a brief review of scanning-gate microscopy applied to the imaging of electron tr...
International audienceQuantum rings patterned from two-dimensional semiconductor heterostructures ex...
International audienceWe study scanning gate microscopy (SGM) in open quantum rings obtained from bu...
International audienceQuantum rings patterned from two-dimensional semiconductor heterostructures ex...
The manuscript describes my research activities on quantum transport in electronic devices using an ...
We use scanning gate microscopy to study electron transport through an open, gate-defined resonator ...
Traditionally, the understanding of quantum transport, coherent and ballistic(1), relies on the meas...
Among the plethora of nano-objects, those conducting electricity attracted a great deal of attention...
The use of scanning probe microscopies such as Scanning Tunneling Microscopy (STM) and Ballistic Ele...
We present conductance measurements of a ballistic circular cavity influenced by a scanning gate. In...
In graphene, charge carriers behave as massless (Dirac) fermions, yielding unprecedented electrical ...
We image charge transport in the quantum Hall effect using a scanning charge ac-cumulation microscop...
La microscopie de grille à balayage (SGM pour Scanning GateMicroscopy), développée à la fin des anné...
Scanning-gate imaging of semiconductor quantum dots (QDs) promises access to probability distributio...
International audienceThis paper presents an overview of scanning-gate microscopy applied to the ima...
This paper presents a brief review of scanning-gate microscopy applied to the imaging of electron tr...
International audienceQuantum rings patterned from two-dimensional semiconductor heterostructures ex...
International audienceWe study scanning gate microscopy (SGM) in open quantum rings obtained from bu...
International audienceQuantum rings patterned from two-dimensional semiconductor heterostructures ex...
The manuscript describes my research activities on quantum transport in electronic devices using an ...
We use scanning gate microscopy to study electron transport through an open, gate-defined resonator ...
Traditionally, the understanding of quantum transport, coherent and ballistic(1), relies on the meas...
Among the plethora of nano-objects, those conducting electricity attracted a great deal of attention...
The use of scanning probe microscopies such as Scanning Tunneling Microscopy (STM) and Ballistic Ele...
We present conductance measurements of a ballistic circular cavity influenced by a scanning gate. In...
In graphene, charge carriers behave as massless (Dirac) fermions, yielding unprecedented electrical ...
We image charge transport in the quantum Hall effect using a scanning charge ac-cumulation microscop...
La microscopie de grille à balayage (SGM pour Scanning GateMicroscopy), développée à la fin des anné...
Scanning-gate imaging of semiconductor quantum dots (QDs) promises access to probability distributio...