Classical interferometers are indispensable tools for the precise determination of various physical quantities. Their accuracy is bound by the standard quantum limit. This limit can be overcome by using quantum states or nonlinear quantum elements. Here, we present the experimental study of a nonlinear Josephson interferometer operating in the microwave regime. Our quantum microwave parametric interferometer (QUMPI) is based on superconducting flux-driven Josephson parametric amplifiers combined with linear microwave elements. We perform a systematic analysis of the implemented QUMPI. We find that its Gaussian interferometric power exceeds the shot-noise limit and observe sub-Poissonian photon statistics in the output modes. Furthermore, we...
In the last few years, several groups have proposed and developed their own platforms demonstrating ...
International audienceWe have developed and measured a high-gain quantum-limited microwave parametri...
Quantum illumination is a sensing technique that employs entangled signal-idler beams to improve the...
Determining the state of a qubit on a timescale much shorter than its relaxation time is an essentia...
We demonstrate a high dynamic range Josephson parametric amplifier (JPA) in which the active nonline...
Detection of low-reflectivity objects can be enriched via the so-called quantum illumination procedu...
National audienceNowadays, it is possible to control and measure the quantum state of systems with a...
Circuit quantum electrodynamics (cQED) is a prominent platform for quantum information processing, i...
Coherent superconducting circuits play a key role in explor-ing the interaction between light and ma...
Josephson traveling wave parametric amplifiers enable the amplification of weak microwave signals cl...
Josephson parametric amplifiers (JPAs) approaching quantum-limited noise performance have been instr...
In the last few years, several groups have proposed and developed their own platforms demonstrating ...
The advent of ultra-low noise microwave amplifiers revolutionized several research fields demanding ...
Josephson junctions (JJ) and their tunable properties, including their nonlinearities, form the core...
Superconducting circuits have recently become a major contender for the implementation of quantum co...
In the last few years, several groups have proposed and developed their own platforms demonstrating ...
International audienceWe have developed and measured a high-gain quantum-limited microwave parametri...
Quantum illumination is a sensing technique that employs entangled signal-idler beams to improve the...
Determining the state of a qubit on a timescale much shorter than its relaxation time is an essentia...
We demonstrate a high dynamic range Josephson parametric amplifier (JPA) in which the active nonline...
Detection of low-reflectivity objects can be enriched via the so-called quantum illumination procedu...
National audienceNowadays, it is possible to control and measure the quantum state of systems with a...
Circuit quantum electrodynamics (cQED) is a prominent platform for quantum information processing, i...
Coherent superconducting circuits play a key role in explor-ing the interaction between light and ma...
Josephson traveling wave parametric amplifiers enable the amplification of weak microwave signals cl...
Josephson parametric amplifiers (JPAs) approaching quantum-limited noise performance have been instr...
In the last few years, several groups have proposed and developed their own platforms demonstrating ...
The advent of ultra-low noise microwave amplifiers revolutionized several research fields demanding ...
Josephson junctions (JJ) and their tunable properties, including their nonlinearities, form the core...
Superconducting circuits have recently become a major contender for the implementation of quantum co...
In the last few years, several groups have proposed and developed their own platforms demonstrating ...
International audienceWe have developed and measured a high-gain quantum-limited microwave parametri...
Quantum illumination is a sensing technique that employs entangled signal-idler beams to improve the...