Entanglement-based quantum sensors have much better sensitivity than corresponding classical sensors in a noisy and lossy regime. In our recent paper, we showed that the entanglement-assisted (EA) joint monostatic–bistatic quantum radar performs much better than conventional radars. Here, we propose an entanglement-assisted (EA) multistatic radar that significantly outperforms EA bistatic, coherent state-based quantum, and classical radars. The proposed EA multistatic radar employs multiple entangled transmitters performing transmit-side optical phase conjugation, multiple coherent detection-based receivers serving as EA detectors, and a joint detector
Quantum metrology takes advantage of nonclassical resources such as squeezing and entanglement to ac...
Quantum metrology takes advantage of nonclassical resources such as entanglement to achieve a sensit...
Quantum technology has already been introduced in many fields, like information processi...
Entanglement-based quantum sensors have much better sensitivity than corresponding classical sensors...
Entanglement is a unique quantum information processing feature. With the help of entanglement we ca...
International audienceThe conventional radar theory relies on the classical electromagnetic wave the...
This paper presents a study on quantum radar technology developments, design Consideration for its i...
Quantum radar takes advantage of quantum correlations. Detection concepts have been devised to facil...
International audienceIn the last decade a lot of research activity focused on the use of quantum en...
There has been much recent interest in quantum metrology for applications to sub-Raleigh ranging and...
It is well known that entanglement can benefit quantum information processing tasks. Quantum illumin...
This thesis provides an original approach of the quantum illumination radar using the quantum inform...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
Recently, a quantum-enhanced radar transmitter operating at microwave frequencies, called a quantum ...
International audienceA quantum illumination radar uses quantum entanglement to enhance photodetecti...
Quantum metrology takes advantage of nonclassical resources such as squeezing and entanglement to ac...
Quantum metrology takes advantage of nonclassical resources such as entanglement to achieve a sensit...
Quantum technology has already been introduced in many fields, like information processi...
Entanglement-based quantum sensors have much better sensitivity than corresponding classical sensors...
Entanglement is a unique quantum information processing feature. With the help of entanglement we ca...
International audienceThe conventional radar theory relies on the classical electromagnetic wave the...
This paper presents a study on quantum radar technology developments, design Consideration for its i...
Quantum radar takes advantage of quantum correlations. Detection concepts have been devised to facil...
International audienceIn the last decade a lot of research activity focused on the use of quantum en...
There has been much recent interest in quantum metrology for applications to sub-Raleigh ranging and...
It is well known that entanglement can benefit quantum information processing tasks. Quantum illumin...
This thesis provides an original approach of the quantum illumination radar using the quantum inform...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
Recently, a quantum-enhanced radar transmitter operating at microwave frequencies, called a quantum ...
International audienceA quantum illumination radar uses quantum entanglement to enhance photodetecti...
Quantum metrology takes advantage of nonclassical resources such as squeezing and entanglement to ac...
Quantum metrology takes advantage of nonclassical resources such as entanglement to achieve a sensit...
Quantum technology has already been introduced in many fields, like information processi...