Outlier-Robust Three-Element Non-Uniform Linear Arrays Design Strategy for Direction of Arrival Estimation in MIMO Radar. [PDF]
Quirini A, Colone F, Lombardo P.
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DEF-CRYPT-Q: a quantum-enhanced hybrid encryption framework for privacy-preserving distributed defense communications. [PDF]
Anithadevi N +2 more
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Environment-Aware Proactive Beam Prediction in mmWave V2I via Multi-Modal Prior Mask Map. [PDF]
Zhou C, Xu Y.
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On the Role of Artificial Intelligent Technology for Millimetre-Wave and Terahertz Applications. [PDF]
Kouhalvandi L, Matekovits L.
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The analysis of convergence of the bistatic multiphoton quantum radar cross section
Quantum Information Processing, 2023zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Huifang Li, Chenyang Xia
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Algorithmic analysis of quantum radar cross sections
Proceedings of SPIE, 2015Sidelobe structures on classical radar cross section graphs are a consequence of discontinuities in the surface currents. In contrast, quantum radar theory states that sidelobe structures on quantum radar cross section graphs are due to quantum interference.
Salvador E Venegas-Andraca
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The Effect of Polarization on the Quantum Radar Cross Section Response
IEEE Journal of Quantum Electronics, 2017The quantum radar cross section (QRCS) is a measure of how electromagnetically “large” an object appears to a quantum radar. The fundamental mechanism that creates the return response is the interaction between the atomic electric dipole moments and the incoming photon.
Marco Lanzagorta, Ram M Narayanan
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Analysis of Quantum Radar Cross Section and Its Influence on Target Detection Performance
IEEE Photonics Technology Letters, 2014Quantum radar is a new detection technology based on the mechanism of quantum physics and is promising for enhancing radar target detection capability. In this letter, the quantum radar equation is established based on the traditional radar equation; meanwhile, how the quantum radar cross section (QRCS) influences target detection performance and how ...
Hongqi Fan, Kang Liu
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Closed-form expressions for the bistatic quantum radar scattered by the circular and triangular plates with the single-photon incidence are derived in the field of the Fourier relationship between the surface atom distribution and the bistatic quantum radar cross section (BIQRCS).
Chonghua Fang
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Simulation of Quantum Radar Cross Section for 3-D Targets
2019 International Applied Computational Electromagnetics Society Symposium - China (ACES), 2019Quantum radar has attracted extensive attentions since it was proposed. As an important parameter of quantum radar, quantum radar cross section (QRCS) is defined from the framework of quantum electrodynamics. More recently, many researches related to the computational simulation of QRCS are reported.
Xiaodong Ye
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