International audienceA superconducting quantum interference device (SQUID) with single-walled carbon nanotube (CNT) Josephson junctions is presented. Quantum confinement in each junction induces a discrete quantum dot (QD) energy level structure, which can be controlled with two lateral electrostatic gates. In addition, a backgate electrode can vary the transparency of the QD barriers, thus permitting change in the hybridization of the QD states with the superconducting contacts. The gates are also used to directly tune the quantum phase interference of the Cooper pairs circulating in the SQUID ring. Optimal modulation of the switching current with magnetic flux is achieved when both QD junctions are in the 'on' or 'off' state. In particul...
\u3cp\u3eThe Josephson effect describes supercurrent flowing through a junction connecting two super...
We demonstrate an Al superconducting quantum interference device in which the Josephson junctions ar...
International audienceHybrid semiconductor/superconductor devices constitute an important platform f...
International audienceA superconducting quantum interference device (SQUID) with single-walled carbo...
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...
We present measurements of DC superconducting quantum interference devices based on Nb/graphene/Nb J...
The superconducting proximity effect in graphene can be used to create Josephson junctions with crit...
Hybrid circuit quantum electrodynamics (QED) involves the study of coherent quantum physics in solid...
Hybrid circuit QED involves the study of coherent quantum physics in solid-state systems via their i...
International audienceCarbon nanotube Josephson junctions in the open quantum dot limit are fabricat...
We have fabricated and studied a promising kind of direct current superconducting quantum interferen...
The quantum behaviour of mechanical resonators is a new and emerging field driven by recent experime...
We introduce a three-junction superconducting quantum interference device SQUID that can be used as ...
We report on the fabrication and characterization of micrometer-sized superconducting quantum interf...
\u3cp\u3eThe Josephson effect describes supercurrent flowing through a junction connecting two super...
We demonstrate an Al superconducting quantum interference device in which the Josephson junctions ar...
International audienceHybrid semiconductor/superconductor devices constitute an important platform f...
International audienceA superconducting quantum interference device (SQUID) with single-walled carbo...
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...
We present measurements of DC superconducting quantum interference devices based on Nb/graphene/Nb J...
The superconducting proximity effect in graphene can be used to create Josephson junctions with crit...
Hybrid circuit quantum electrodynamics (QED) involves the study of coherent quantum physics in solid...
Hybrid circuit QED involves the study of coherent quantum physics in solid-state systems via their i...
International audienceCarbon nanotube Josephson junctions in the open quantum dot limit are fabricat...
We have fabricated and studied a promising kind of direct current superconducting quantum interferen...
The quantum behaviour of mechanical resonators is a new and emerging field driven by recent experime...
We introduce a three-junction superconducting quantum interference device SQUID that can be used as ...
We report on the fabrication and characterization of micrometer-sized superconducting quantum interf...
\u3cp\u3eThe Josephson effect describes supercurrent flowing through a junction connecting two super...
We demonstrate an Al superconducting quantum interference device in which the Josephson junctions ar...
International audienceHybrid semiconductor/superconductor devices constitute an important platform f...