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Metasurface-based Doppler cloaks: Time-varying metasurface profile to achieve perfect frequency mixing

机译:基于元面的多普勒斗篷:时变质表面剖面以实现完美的频率混合

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Doppler cloaks are spatiotemporally modulated metamaterial covers to be placed in front or wrapped around a moving object to restore locally the source illumination frequency, as if it were not in motion. Although the cloak effectively compensates such a frequency shift, the required thickness of the metamaterial is in the order of dozens of wavelengths of the incident signal for ensuring a complete energy transfer from the Doppler shifted to the original source frequency. In this contribution, we present a bi-dimensional version of the Doppler cloak, realized by a time-varying metasurface with proper time-dependent transmission coefficient. The temporal profile of the transmission coefficient is defined for achieving the same frequency mixing behavior of bulk Doppler cloaks. The operation is verified by a full-wave FDTD numerical simulation in case of normal incidence.
机译:多普勒斗篷是时尚调制的超材料盖,要置于前面或缠绕在移动物体周围,以恢复局部照明频率,仿佛它不在运动中。虽然斗篷有效地补偿了这种频移,但是超材料的所需厚度牵引发生的入射信号的几十个波长,以确保从多普勒移位到原始源频率的完全电能。在这一贡献中,我们介绍了一双维版本的多普勒斗篷,通过具有适当的时间依赖传输系数的时变的元表面实现。定义透射系数的时间轮廓,用于实现散装多普勒斗篷的相同频率混合行为。在正常入射的情况下,通过全波FDTD数值模拟验证该操作。

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