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Algorithmic Analysis of Quantum Radar Cross Sections

机译:量子雷达横截面的算法分析

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Sidelobe 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. Moreover, it is conjectured that quantum sidelobe structures may be used to detect targets oriented off the specular direction. Because of the high data bandwidth expected from quantum radar, it may be necessary to use sophisticated quantum signal analysis algorithms to determine the presence of stealth targets through the sidelobe structures. In this paper we introduce three potential quantum algorithmic techniques to compute classical and quantum radar cross sections. It is our purpose to develop a computer science-oriented tool for further physical analysis of quantum radar models as well as applications of quantum radar technology in various fields.
机译:经典雷达横截面图上的旁瓣结构是表面电流不连续的结果。相反,量子雷达理论指出,量子雷达截面图上的旁瓣结构是由于量子干扰引起的。而且,推测可以将量子旁瓣结构用于检测偏离镜面方向的目标。由于量子雷达具有很高的数据带宽,可能有必要使用复杂的量子信号分析算法来确定旁瓣结构是否存在隐身目标。在本文中,我们介绍了三种潜在的量子算法技术来计算经典和量子雷达的横截面。我们的目的是开发一种面向计算机科学的工具,用于对量子雷达模型进行进一步的物理分析以及量子雷达技术在各个领域的应用。

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