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Do Cloaked Objects Really Scatter Less?

机译:隐蔽对象的散布真的更少吗?

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We discuss the global scattering response of invisibility cloaks over the entire electromagnetic spectrum, from static to very high frequencies. Based on linearity, causality, and energy conservation, we show that the total extinction and scattering, integrated over all wavelengths, of any linear, passive, causal, and nondiamagnetic cloak, necessarily increase compared to the uncloaked case. In light of this general principle, we provide a quantitative measure to compare the global performance of different cloaking techniques and we discuss solutions to minimize the global scattering signature of an object using thin, superconducting shells. Our results provide important physical insights on how invisibility cloaks operate and affect the global scattering of an object, suggesting ways to defeat countermeasures aimed at detecting cloaked objects using short impinging pulses.
机译:我们讨论了隐形斗篷在从静态到非常高的整个电磁频谱上的全局散射响应。基于线性,因果关系和能量守恒,我们显示,与线性状态相比,任何线性,被动,因果和非反磁性隐身衣在所有波长上的总消光和散射必定增加。根据这一一般原理,我们提供了一种定量方法来比较不同隐身技术的整体性能,并讨论了使用超导薄壳使物体的整体散射特征最小化的解决方案。我们的研究结果提供了有关隐形斗篷如何操作并影响物体整体散射的重要物理见解,为克服旨在使用短冲击脉冲检测隐形斗篷的对策提供了方法。

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