Superconducting circuits are a prominent tool for the exploration of the interaction between light and matter in the quantum regime. Photons hosted in superconducting oscillators can be coupled to various hybrid systems such as mechanical vibrations, spin ensembles or quantum dots. Their interaction is mediated by electromagnetic forces, whose strength grows with the vacuum-field fluctuations of the oscillator. Quantum control of the hybrid system through the photons requires strong coupling, meaning an energy exchange rate greater than their individual relaxation rates. Thus, the oscillator ought to be designed as to maximize field fluctuations. While some hybrid systems are comfortably installed in the strong-coupling regime, some others ...
The recent field of Josephson photonics is about the interplay between circuit quantum electrodynami...
Circuit quantum electrodynamics (cQED) is a prominent platform for quantum information processing, i...
Superconducting circuits provide an architecture upon which cavity quantum electrodynamics (QED) can...
The interaction strength of an oscillator to a qubit grows with the oscillator's vacuum field fluctu...
Understanding the way light and matter interact remains a central topic in modern physics despite de...
The laws of quantum mechanics imply the existence of an intrinsic uncertainty, or noise, in the elec...
Superconducting quantum circuits are currently investigated in many labs. An important goal of this ...
Quantum systems can occupy peculiar states, such as superposition or entangled states. These states ...
A requirement for quantum information experiments using superconducting quantum circuits is the read...
This thesis presents a series of circuit QED (cQED) experiments, in which artificial atoms consistin...
Superconducting circuits stand among the most advanced quantum information processing platforms. The...
Superconducting circuits stand among the most advanced quantum information processing platforms. The...
In this thesis, measurements on superconducting electrical circuits that exhibit quantum mechanical ...
Squeezed light, displaying less fluctuation than vacuum in some observable, is key in the flourishin...
The recent field of Josephson photonics is about the interplay between circuit quantum electrodynami...
Circuit quantum electrodynamics (cQED) is a prominent platform for quantum information processing, i...
Superconducting circuits provide an architecture upon which cavity quantum electrodynamics (QED) can...
The interaction strength of an oscillator to a qubit grows with the oscillator's vacuum field fluctu...
Understanding the way light and matter interact remains a central topic in modern physics despite de...
The laws of quantum mechanics imply the existence of an intrinsic uncertainty, or noise, in the elec...
Superconducting quantum circuits are currently investigated in many labs. An important goal of this ...
Quantum systems can occupy peculiar states, such as superposition or entangled states. These states ...
A requirement for quantum information experiments using superconducting quantum circuits is the read...
This thesis presents a series of circuit QED (cQED) experiments, in which artificial atoms consistin...
Superconducting circuits stand among the most advanced quantum information processing platforms. The...
Superconducting circuits stand among the most advanced quantum information processing platforms. The...
In this thesis, measurements on superconducting electrical circuits that exhibit quantum mechanical ...
Squeezed light, displaying less fluctuation than vacuum in some observable, is key in the flourishin...
The recent field of Josephson photonics is about the interplay between circuit quantum electrodynami...
Circuit quantum electrodynamics (cQED) is a prominent platform for quantum information processing, i...
Superconducting circuits provide an architecture upon which cavity quantum electrodynamics (QED) can...