Many important phenomena in quantum devices are dynamic, meaning that they cannot be studied using time-averaged measurements alone. Experiments that measure such transient effects are collectively known as fast readout. One of the most useful techniques in fast electrical readout is radio-frequency reflectometry, which can measure changes in impedance (both resistive and reactive) even when their duration is extremely short, down to a microsecond or less. Examples of reflectometry experiments, some of which have been realised and others so far only proposed, include projective measurements of qubits and Majorana devices for quantum computing, real-time measurements of mechanical motion and detection of non-equilibrium temperature fluctuati...
Experiments with superconducting circuits require careful calibration of the applied pulses and fiel...
Superconducting circuits and devices have unique properties that make them interesting from both the...
Real-time monitoring of a quantum state provides powerful tools for studying the backaction of quant...
Radio-frequency measurements could satisfy DiVincenzo's readout criterion in future large-scale soli...
In this thesis, we will present the theoretical and experimental work that led to the realization of...
Fault-tolerant spin-based quantum computers will require fast and accurate qubit read out. This can ...
Electrical readout of spin qubits requires fast and sensitive measurements, which are hindered by po...
Fault-tolerant spin-based quantum computers will require fast and accurate qubit readout. This can b...
International audienceRadio-frequency reflectometry (RFR) is a technique that was developed to chara...
Electrical readout of spin qubits requires fast and sensitive measurements, which are hindered by po...
Superconducting resonators enable fast characterization and readout of mesoscopic quantum devices. F...
International audienceWhile quantum entanglement can enhance the performance of several technologies...
Developing fast, accurate, and scalable techniques for quantum-state readout is an active area in se...
In this thesis we present measurements on several different devices, including the single-Cooper-pai...
A supercurrent transistor is a superconductor-semiconductor hybrid device in which the Josephson sup...
Experiments with superconducting circuits require careful calibration of the applied pulses and fiel...
Superconducting circuits and devices have unique properties that make them interesting from both the...
Real-time monitoring of a quantum state provides powerful tools for studying the backaction of quant...
Radio-frequency measurements could satisfy DiVincenzo's readout criterion in future large-scale soli...
In this thesis, we will present the theoretical and experimental work that led to the realization of...
Fault-tolerant spin-based quantum computers will require fast and accurate qubit read out. This can ...
Electrical readout of spin qubits requires fast and sensitive measurements, which are hindered by po...
Fault-tolerant spin-based quantum computers will require fast and accurate qubit readout. This can b...
International audienceRadio-frequency reflectometry (RFR) is a technique that was developed to chara...
Electrical readout of spin qubits requires fast and sensitive measurements, which are hindered by po...
Superconducting resonators enable fast characterization and readout of mesoscopic quantum devices. F...
International audienceWhile quantum entanglement can enhance the performance of several technologies...
Developing fast, accurate, and scalable techniques for quantum-state readout is an active area in se...
In this thesis we present measurements on several different devices, including the single-Cooper-pai...
A supercurrent transistor is a superconductor-semiconductor hybrid device in which the Josephson sup...
Experiments with superconducting circuits require careful calibration of the applied pulses and fiel...
Superconducting circuits and devices have unique properties that make them interesting from both the...
Real-time monitoring of a quantum state provides powerful tools for studying the backaction of quant...