During this thesis, we have studied the competition between two many-body effects: the Kondo effect, which is the screening of a localized magnetic moment by the conduction electrons of a conductor, and proximity induced superconductivity. The competition between these two effects has been already investigated at equilibrium, by monitoring the current phase relation of carbon nanotube-based Josephson junctions. These experiments have revealed phase and gate dependent quantum transitions between the magnetic doublet state and the Kondo screened singlet non-magnetic state of the nanotube. In the present work we show that this transition can be dynamically induced by exploring the AC Josephson emission. The AC Josephson emission can be measure...
On-chip electronic circuits at cryogenic temperature are instrumental to studying the quantum behavi...
In this thesis, we study carbon nanotubes based quantum dot circuits embedded in a microwave cavity....
In this thesis, we have studied carbon nanotube-based nanocircuits integrated in a microwave cavity ...
During this thesis, we have studied the competition between two many-body effects: the Kondo effect,...
This thesis is dedicated to quantum transport through a Kondo impurity, formed in a carbon nanotube ...
This thesis discusses two experiments of mesoscopic physics regarding the high frequency quantum noi...
The manipulation of matter at the nano-scale has opened, since fifteen years, new fundamental and ap...
La manipulation de la matière au niveau nanométrique a ouvert depuis une quinzaine d'années de nouve...
The main goal of this thesis is the investigation of dissipationless supercurrent in multiwall carbo...
International audienceCarbon nanotube Josephson junctions in the open quantum dot limit are fabricat...
The Kondo effect and superconductivity are both prime examples of many-body phenomena. Here we repor...
The current emission noise of a carbon nanotube quantum dot in the Kondo regime is measured at frequ...
On-chip electronic circuits at cryogenic temperature are instrumental to studying the quantum behavi...
We report on the preparation of carbon nanotube Josephson junctions using superconducting electrodes...
Josephson junctions are the building blocks of superconducting electronics. They are made of two sup...
On-chip electronic circuits at cryogenic temperature are instrumental to studying the quantum behavi...
In this thesis, we study carbon nanotubes based quantum dot circuits embedded in a microwave cavity....
In this thesis, we have studied carbon nanotube-based nanocircuits integrated in a microwave cavity ...
During this thesis, we have studied the competition between two many-body effects: the Kondo effect,...
This thesis is dedicated to quantum transport through a Kondo impurity, formed in a carbon nanotube ...
This thesis discusses two experiments of mesoscopic physics regarding the high frequency quantum noi...
The manipulation of matter at the nano-scale has opened, since fifteen years, new fundamental and ap...
La manipulation de la matière au niveau nanométrique a ouvert depuis une quinzaine d'années de nouve...
The main goal of this thesis is the investigation of dissipationless supercurrent in multiwall carbo...
International audienceCarbon nanotube Josephson junctions in the open quantum dot limit are fabricat...
The Kondo effect and superconductivity are both prime examples of many-body phenomena. Here we repor...
The current emission noise of a carbon nanotube quantum dot in the Kondo regime is measured at frequ...
On-chip electronic circuits at cryogenic temperature are instrumental to studying the quantum behavi...
We report on the preparation of carbon nanotube Josephson junctions using superconducting electrodes...
Josephson junctions are the building blocks of superconducting electronics. They are made of two sup...
On-chip electronic circuits at cryogenic temperature are instrumental to studying the quantum behavi...
In this thesis, we study carbon nanotubes based quantum dot circuits embedded in a microwave cavity....
In this thesis, we have studied carbon nanotube-based nanocircuits integrated in a microwave cavity ...