
Research Article
The Computation of Quantum Radar Cross Section for the Regular Five-Pointed Star
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@INPROCEEDINGS{10.1007/978-3-030-90196-7_48, author={Chonghua Fang and Liang Hua and Shi Xinyang and Yang Xu and Xianliang Zeng}, title={The Computation of Quantum Radar Cross Section for the Regular Five-Pointed Star}, proceedings={Artificial Intelligence for Communications and Networks. Third EAI International Conference, AICON 2021, Xining, China, October 23--24, 2021, Proceedings, Part I}, proceedings_a={AICON}, year={2021}, month={11}, keywords={Computation Quantum radar cross section Regular five-pointed star}, doi={10.1007/978-3-030-90196-7_48} }
- Chonghua Fang
Liang Hua
Shi Xinyang
Yang Xu
Xianliang Zeng
Year: 2021
The Computation of Quantum Radar Cross Section for the Regular Five-Pointed Star
AICON
Springer
DOI: 10.1007/978-3-030-90196-7_48
Abstract
The quantum radar cross section is a kind of measure of the “quantum stealth performance” of the targets of interest. Obviously, it is extraordinary essential for the design and development of stealth weapon systems and platforms. In this paper, we have shown the simulation of quantum radar cross section (QRCS) and classical radar cross section (CRCS) for the regular five-pointed star. Based on quantum electrodynamics and interferometric considerations, we demonstrated the side-lobe quantum effect between QRCS and CRCS.
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