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Quantum Computation of the Electromagnetic Cross Section of Dielectric Targets

机译:介电靶电磁截面的量子计算

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The Radar Cross Section (RCS) is a crucial element for assessing target visibility and target characterization, and it depends not only on the target's geometry but also on its composition. However, the calculation of the RCS is a challenging task due to the mathematical description of electromagnetic phenomena as well as the computational resources needed. In this paper, we will introduce two ideas for the use of quantum information processing techniques to calculate the RCS of dielectric targets. The first is to use toolboxes of quantum functions to determine the geometric component of the RCS. The second idea is to use quantum walks, expressed in terms of scattering processes, to model radar absorbing materials.
机译:雷达横截面(RCS)是评估目标可见性和目标特征的关键要素,它不仅取决于目标的几何形状,还取决于其组成。但是,由于电磁现象的数学描述以及所需的计算资源,RCS的计算是一项艰巨的任务。在本文中,我们将介绍两个使用量子信息处理技术来计算介电目标的RCS的想法。首先是使用量子函数工具箱来确定RCS的几何成分。第二个想法是使用以散射过程表示的量子行走来模拟雷达吸收材料。

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