We compare the performance of a quantum radar based on two-mode squeezed states with a classical radar system based on correlated thermal noise. With a constraint of equal number of photons NS transmitted to probe the environment, we find that the quantum setup exhibits an advantage with respect to its classical counterpart of √2 in the cross-mode correlations. Amplification of the signal and the idler is considered at different stages of the protocol, showing that no quantum advantage is achievable when a large-enough gain is applied, even when quantum-limited amplifiers are available. We also characterize the minimal type-II error probability decay, given a constraint on the type-I error probability, and find that the optimal decay rate o...
Radars use time-of-flight measurement to infer the range to a distant target from its return’s round...
In quantum reading, a quantum state of light (transmitter) is applied to read classical information....
This book offers a concise review of quantum radar theory. Our approach is pedagogical, making empha...
We compare the performance of a quantum radar based on two-mode squeezed states with a classical rad...
It has been proved that quantum illumination (QI) radar has the quantum advantages in error-probabil...
Quantum radar takes advantage of quantum correlations. Detection concepts have been devised to facil...
This paper presents a study on quantum radar technology developments, design Consideration for its i...
While quantum entanglement can enhance the performance of several technologies such as computing, se...
Based on quantum illumination (QI) protocol, microwave quantum radar has been developed, which has a...
For target detection, quantum two-mode squeezing (QTMS) radars and noise radars require estimation o...
This thesis provides an original approach of the quantum illumination radar using the quantum inform...
International audienceA quantum illumination radar uses quantum entanglement to enhance photodetecti...
Josephson parametric amplifier (JPA) engineering is a significant component in the quantum two-mode ...
Quantum target detection aims to utilise quantum technologies to achieve performances in target dete...
We analyze and compare the characterization of a quantum device in terms of noise, transmitted bit-e...
Radars use time-of-flight measurement to infer the range to a distant target from its return’s round...
In quantum reading, a quantum state of light (transmitter) is applied to read classical information....
This book offers a concise review of quantum radar theory. Our approach is pedagogical, making empha...
We compare the performance of a quantum radar based on two-mode squeezed states with a classical rad...
It has been proved that quantum illumination (QI) radar has the quantum advantages in error-probabil...
Quantum radar takes advantage of quantum correlations. Detection concepts have been devised to facil...
This paper presents a study on quantum radar technology developments, design Consideration for its i...
While quantum entanglement can enhance the performance of several technologies such as computing, se...
Based on quantum illumination (QI) protocol, microwave quantum radar has been developed, which has a...
For target detection, quantum two-mode squeezing (QTMS) radars and noise radars require estimation o...
This thesis provides an original approach of the quantum illumination radar using the quantum inform...
International audienceA quantum illumination radar uses quantum entanglement to enhance photodetecti...
Josephson parametric amplifier (JPA) engineering is a significant component in the quantum two-mode ...
Quantum target detection aims to utilise quantum technologies to achieve performances in target dete...
We analyze and compare the characterization of a quantum device in terms of noise, transmitted bit-e...
Radars use time-of-flight measurement to infer the range to a distant target from its return’s round...
In quantum reading, a quantum state of light (transmitter) is applied to read classical information....
This book offers a concise review of quantum radar theory. Our approach is pedagogical, making empha...