Recently, a quantum-enhanced radar transmitter operating at microwave frequencies, called a quantum two-mode squeezing radar (QTMS radar), was demonstrated in the laboratory. Inspired by this, we discuss the possibility of building an array of quantum radars. In order for quantum radars to be practically relevant, it is important that an array can be built. We find that it is indeed possible to build such an array, but that the details matter. A quantum illumination radar array may not be very effective, but a QTMS radar array is quite amenable to array signal processing. We also briefly discuss the practical aspects of building a quantum radar array
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 illumination is a sensing technique that employs entangled signal-idler beams to improve the...
We consider the implications for the practical usefulness of a quantum enhanced radar system in the ...
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...
This book offers a concise review of quantum radar theory. Our approach is pedagogical, making empha...
Based on quantum illumination (QI) protocol, microwave quantum radar has been developed, which has a...
While quantum entanglement can enhance the performance of several technologies such as computing, se...
From the session: Poster Presentations - 5 (P5). Paper P5_9.We discuss our progress towards creating...
Quantum technology has already been introduced in many fields, like information processi...
Detection of low-reflectivity objects can be improved by the so-called Quantum Illumination (QI) pro...
The field of propagating quantum microwaves is a relatively new area of research that is receiving i...
The field of propagating quantum microwaves is a relatively new area of research that is receiving i...
A Microwave Quantum Radar (MQR) based on the Quantum Illumination (QI) protocol and using a Josephso...
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 illumination is a sensing technique that employs entangled signal-idler beams to improve the...
We consider the implications for the practical usefulness of a quantum enhanced radar system in the ...
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...
This book offers a concise review of quantum radar theory. Our approach is pedagogical, making empha...
Based on quantum illumination (QI) protocol, microwave quantum radar has been developed, which has a...
While quantum entanglement can enhance the performance of several technologies such as computing, se...
From the session: Poster Presentations - 5 (P5). Paper P5_9.We discuss our progress towards creating...
Quantum technology has already been introduced in many fields, like information processi...
Detection of low-reflectivity objects can be improved by the so-called Quantum Illumination (QI) pro...
The field of propagating quantum microwaves is a relatively new area of research that is receiving i...
The field of propagating quantum microwaves is a relatively new area of research that is receiving i...
A Microwave Quantum Radar (MQR) based on the Quantum Illumination (QI) protocol and using a Josephso...
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 illumination is a sensing technique that employs entangled signal-idler beams to improve the...