
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.
Science, Physics, QC1-999, Q, quantum radars, Astrophysics, Article, entanglement-assisted detection, QB460-466, radars, entanglement; radars; quantum sensing; quantum radars; entanglement-assisted detection, quantum sensing, entanglement
Science, Physics, QC1-999, Q, quantum radars, Astrophysics, Article, entanglement-assisted detection, QB460-466, radars, entanglement; radars; quantum sensing; quantum radars; entanglement-assisted detection, quantum sensing, entanglement
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