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Nearly cloaking the full Maxwell equations: Cloaking active contents with general conducting layers

机译:几乎掩盖了麦克斯韦方程组的全部内容:用一般的导电层掩盖了有效成分

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摘要

The regularized near-cloak via the transformation optics approach in the time-harmonic electromagnetic scattering is considered. This work extends the existing studies mainly in two aspects. First, it presents a near-cloak construction by incorporating a much more general conducting layer between the cloaked and cloaking regions. This might be of significant practical importance when production fluctuations occur. Second, it allows the cloaked contents to be both passive and active with an applied current inside. In assessing the near-cloaking performance, comprehensive and sharp estimates are derived for the scattering amplitude in terms of the asymptotic regularization parameter and the material tensors of the conducting layer. The scattering estimates are independent of the passive/active contents being cloaked, which implies that one could nearly cloak arbitrary contents by using the proposed near-cloak construction.
机译:考虑了在时谐电磁散射中通过转换光学方法进行的正则化隐身。这项工作主要从两个方面扩展了现有研究。首先,它通过在隐身区和隐身区之间引入更为通用的导电层,从而呈现出近乎隐身的构造。当发生生产波动时,这可能具有重要的实际意义。其次,它允许隐藏的内容在内部施加电流的情况下既是被动的又是主动的。在评估近乎隐身的性能时,根据渐近正则化参数和导电层的材料张量,得出了散射幅度的全面而精确的估计。散射估计与被掩盖的被动/主动内容无关,这意味着通过使用建议的近掩盖构造,几乎可以掩盖任意内容。

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