Abstract: We have performed a quantum mechanical analysis of travelling-wave parametric amplifiers (TWPAs) in order to investigate five experimental phenomena related to their operations, namely the effect of impedance mismatch, the presence of upper idler modes, the presence of quantum and thermal noise, the generation of squeezed states, and the preservation of pre-squeezed states during amplification. Our analysis uses momentum operators to describe the spatial evolution of quantised modes along a TWPA. We calculate the restriction placed on pump amplitude as well as amplifier gain as a result of impedance mismatch between a TWPA and its external system. We apply our analysis to upper idler modes and demonstrate that they will result in ...
International audienceTraveling wave parametric amplifiers (TWPAs) have recently emerged as essentia...
Future progress and development in ultrasensitive detection and quantum-limited amplification of mic...
The growing interest in quantum technologies, from fundamental physics experiments to quantum comput...
Abstract: We have performed a quantum mechanical analysis of travelling-wave parametric amplifiers (...
The advent of ultra-low noise microwave amplifiers revolutionized several research fields demanding ...
The recent developments in quantum technologies, as well as advanced detection experiments, have rai...
Ultralow-noise microwave amplification and detection play a central role in different applications, ...
Ultralow-noise microwave amplification and detection play a central role in different applications, ...
Quantum-limited microwave parametric amplifiers are genuine key pillars for rising quantum technolog...
We develop a systematic theory of quantum fluctuations in the parametric amplifier, including the re...
The read-out of a microwave qubit state occurs using an amplification chain that enlarges the quantu...
We perform a fully quantum analysis of the continuously pumped nondegenerate travelling wave optical...
International audienceTraveling wave parametric amplifiers (TWPAs) have recently emerged as essentia...
Future progress and development in ultrasensitive detection and quantum-limited amplification of mic...
The growing interest in quantum technologies, from fundamental physics experiments to quantum comput...
Abstract: We have performed a quantum mechanical analysis of travelling-wave parametric amplifiers (...
The advent of ultra-low noise microwave amplifiers revolutionized several research fields demanding ...
The recent developments in quantum technologies, as well as advanced detection experiments, have rai...
Ultralow-noise microwave amplification and detection play a central role in different applications, ...
Ultralow-noise microwave amplification and detection play a central role in different applications, ...
Quantum-limited microwave parametric amplifiers are genuine key pillars for rising quantum technolog...
We develop a systematic theory of quantum fluctuations in the parametric amplifier, including the re...
The read-out of a microwave qubit state occurs using an amplification chain that enlarges the quantu...
We perform a fully quantum analysis of the continuously pumped nondegenerate travelling wave optical...
International audienceTraveling wave parametric amplifiers (TWPAs) have recently emerged as essentia...
Future progress and development in ultrasensitive detection and quantum-limited amplification of mic...
The growing interest in quantum technologies, from fundamental physics experiments to quantum comput...