Quantum illumination (QI) theoretically promises up to a 6dB error-exponent advantage in target detection over the best classical protocol. The advantage is maximised by a regime which includes a very high background, which occurs naturally when one considers microwave operation. Such a regime has well-known practical limitations, though it is clear that, theoretically, knowledge of the associated classical benchmark in the microwave is lacking. The requirement of amplifiers for signal detection necessarily renders the optimal classical protocol here different to that which is traditionally used, and only applicable in the optical domain. In this work we outline what is the true classical benchmark for microwave QI using coherent states, pr...
Quantum target detection aims to utilise quantum technologies to achieve performances in target dete...
It is not clear if the performance of a quantum lidar or radar, without an idler and only using Gaus...
We report the first experimental demonstration of quantum illumination’s signal-to-noise ratio advan...
Quantum illumination (QI) theoretically promises up to a 6dB error-exponent advantage in target dete...
Quantum illumination is a sensing technique that employs entangled signal-idler beams to improve the...
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...
With the aim to loosen the entanglement requirements of quantum illumination, we study the performan...
Quantum target detection forms a particular subset of quantum sensing protocols whereby one's task i...
Quantum target detection aims to utilise quantum technologies to achieve performances in target dete...
Detection of low-reflectivity objects can be enriched via the so-called quantum illumination procedu...
Based on quantum illumination (QI) protocol, microwave quantum radar has been developed, which has a...
Quantum illumination (QI) is an entanglement-enhanced sensing system whose performance advantage ove...
In quantum illumination (QI) the non-classical correlations between continuous variable (CV) entangl...
Quantum target detection aims to utilise quantum technologies to achieve performances in target dete...
It is not clear if the performance of a quantum lidar or radar, without an idler and only using Gaus...
We report the first experimental demonstration of quantum illumination’s signal-to-noise ratio advan...
Quantum illumination (QI) theoretically promises up to a 6dB error-exponent advantage in target dete...
Quantum illumination is a sensing technique that employs entangled signal-idler beams to improve the...
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...
With the aim to loosen the entanglement requirements of quantum illumination, we study the performan...
Quantum target detection forms a particular subset of quantum sensing protocols whereby one's task i...
Quantum target detection aims to utilise quantum technologies to achieve performances in target dete...
Detection of low-reflectivity objects can be enriched via the so-called quantum illumination procedu...
Based on quantum illumination (QI) protocol, microwave quantum radar has been developed, which has a...
Quantum illumination (QI) is an entanglement-enhanced sensing system whose performance advantage ove...
In quantum illumination (QI) the non-classical correlations between continuous variable (CV) entangl...
Quantum target detection aims to utilise quantum technologies to achieve performances in target dete...
It is not clear if the performance of a quantum lidar or radar, without an idler and only using Gaus...
We report the first experimental demonstration of quantum illumination’s signal-to-noise ratio advan...