Supplementary Materials at the end of the fileInternational audienceCoherent control of quantum states has been demonstrated in a variety of superconducting devices. In all these devices, the variables that are manipulated are collective electromagnetic degrees of freedom: charge, superconducting phase, or flux. Here, we demonstrate the coherent manipulation of a quantum system based on Andreev bound states, which are microscopic quasiparticle states inherent to superconducting weak links. Using a circuit quantum electrodynamics setup we perform single-shot readout of this “Andreev qubit”. We determine its excited state lifetime and coherence time to be in the microsecond range. Quantum jumps and parity switchings are observed in continuous...
We report on measurements of macroscopic quantum states in superconducting Josephson circuits using ...
Non-dissipative Josephson current through nanoscale superconducting constrictions is carried by spec...
Superconducting quantum devices have drawn the attention of physicists greatly in recent years, not ...
Supplementary Materials at the end of the fileInternational audienceCoherent control of quantum stat...
Localized electronic states, called Andreev bound states, appear in weak-links placed between superc...
To be published in NatureInternational audienceThe Josephson effect describes the flow of supercurre...
We use a superconducting microresonator as a cavity to sense absorption of microwaves by a supercond...
Two promising architectures for solid-state quantum information processing are based on electron spi...
We have studied the relaxation and dephasing processes in a superconducting quantum point contact in...
We probe experimentally the properties of Andreev states in superconducting weak links based on Indi...
We probe experimentally the properties of Andreev states in superconducting weak links based on Indi...
We present an extensive theoretical analysis of the supercurrent of a superconducting point contact ...
To be published in Physical Review LettersInternational audienceWe have observed that the supercurre...
Quantum simulation is a way to study unexplored Hamiltonians by mapping them onto the assemblies of ...
Quantum bits (qubits) are at the heart of quantum information processing schemes. Currently, solid-s...
We report on measurements of macroscopic quantum states in superconducting Josephson circuits using ...
Non-dissipative Josephson current through nanoscale superconducting constrictions is carried by spec...
Superconducting quantum devices have drawn the attention of physicists greatly in recent years, not ...
Supplementary Materials at the end of the fileInternational audienceCoherent control of quantum stat...
Localized electronic states, called Andreev bound states, appear in weak-links placed between superc...
To be published in NatureInternational audienceThe Josephson effect describes the flow of supercurre...
We use a superconducting microresonator as a cavity to sense absorption of microwaves by a supercond...
Two promising architectures for solid-state quantum information processing are based on electron spi...
We have studied the relaxation and dephasing processes in a superconducting quantum point contact in...
We probe experimentally the properties of Andreev states in superconducting weak links based on Indi...
We probe experimentally the properties of Andreev states in superconducting weak links based on Indi...
We present an extensive theoretical analysis of the supercurrent of a superconducting point contact ...
To be published in Physical Review LettersInternational audienceWe have observed that the supercurre...
Quantum simulation is a way to study unexplored Hamiltonians by mapping them onto the assemblies of ...
Quantum bits (qubits) are at the heart of quantum information processing schemes. Currently, solid-s...
We report on measurements of macroscopic quantum states in superconducting Josephson circuits using ...
Non-dissipative Josephson current through nanoscale superconducting constrictions is carried by spec...
Superconducting quantum devices have drawn the attention of physicists greatly in recent years, not ...