In quantum illumination (QI) the non-classical correlations between continuous variable (CV) entangled modes of radiation are exploited to detect the presence of a target embedded in thermal noise. The extreme environment where QI outperforms its optimal classical counterpart suggests that applications in the microwave domain would benefit the most from this new sensing paradigm. However all the proposed QI receivers rely on ideal photon counters or detectors, which are not currently feasible in the microwave domain. Here we propose a new QI receiver that utilizes a CV controlled not gate (CNOT) in order to perform a joint measurement on a target return and its retained twin. Unlike other QI receivers, the entire detection process is carrie...
We propose a quantum-enhanced sensing protocol to measure the response of a target object to the fre...
A Microwave Quantum Radar (MQR) based on the Quantum Illumination (QI) protocol and using a Josephso...
With the aim to loosen the entanglement requirements of quantum illumination, we study the performan...
Quantum illumination is a quantum-optical sensing technique in which an entangled source is exploite...
Quantum illumination is a quantum-optical sensing technique in which an entangled source is exploite...
Quantum illumination uses entangled signal-idler photon pairs to boost the detection efficiency of l...
Quantum illumination is a sensing technique that employs entangled signal-idler beams to improve the...
Quantum sensing is a creative application of quantum technology which is opening new horizons in ord...
Quantum illumination (QI) is an entanglement-enhanced sensing system whose performance advantage ove...
Quantum illumination (QI) is a revolutionary photonic quantum sensing paradigm that enhances the sen...
Superconducting circuits represent a platform actively researched for its potential use in quantum ...
Quantum illumination (QI) theoretically promises up to a 6dB error-exponent advantage in target dete...
Single-photon detection is an essential component in many experiments in quantum optics, but it rema...
Detection of low-reflectivity objects can be enriched via the so-called quantum illumination procedu...
International audienceSingle photon detection is a key resource for sensing at the quantum limit and...
We propose a quantum-enhanced sensing protocol to measure the response of a target object to the fre...
A Microwave Quantum Radar (MQR) based on the Quantum Illumination (QI) protocol and using a Josephso...
With the aim to loosen the entanglement requirements of quantum illumination, we study the performan...
Quantum illumination is a quantum-optical sensing technique in which an entangled source is exploite...
Quantum illumination is a quantum-optical sensing technique in which an entangled source is exploite...
Quantum illumination uses entangled signal-idler photon pairs to boost the detection efficiency of l...
Quantum illumination is a sensing technique that employs entangled signal-idler beams to improve the...
Quantum sensing is a creative application of quantum technology which is opening new horizons in ord...
Quantum illumination (QI) is an entanglement-enhanced sensing system whose performance advantage ove...
Quantum illumination (QI) is a revolutionary photonic quantum sensing paradigm that enhances the sen...
Superconducting circuits represent a platform actively researched for its potential use in quantum ...
Quantum illumination (QI) theoretically promises up to a 6dB error-exponent advantage in target dete...
Single-photon detection is an essential component in many experiments in quantum optics, but it rema...
Detection of low-reflectivity objects can be enriched via the so-called quantum illumination procedu...
International audienceSingle photon detection is a key resource for sensing at the quantum limit and...
We propose a quantum-enhanced sensing protocol to measure the response of a target object to the fre...
A Microwave Quantum Radar (MQR) based on the Quantum Illumination (QI) protocol and using a Josephso...
With the aim to loosen the entanglement requirements of quantum illumination, we study the performan...