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Dynamical manipulation of electromagnetic polarization using anisotropic meta-mirror

机译:使用各向异性元镜动态控制电磁极化

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摘要

Polarization control of electromagnetic wave is very important in many fields. Here, we propose an active meta-mirror to dynamically manipulate electromagnetic polarization state at a broad band. This meta-mirror is composed of a double-layered metallic pattern backed by a metallic flat plate, and the active elements of PIN diodes are integrated into the meta-atom to control the reflection phase difference between two orthogonal polarization modes. Through switching the operating state of the PIN diodes, the meta-mirror is expected to achieve three polarization states which are left-handed, right-handed circular polarizations and linear polarization, respectively. We fabricated this active meta-mirror and validated its polarization conversion performance by measurement. The linearly polarized incident wave can be dynamically converted to right-handed or left-handed circular polarization in the frequency range between 3.4 and 8.8 GHz with the average loss of 1 dB. Furthermore, it also can keep its initial linear polarization state.
机译:电磁波的极化控制在许多领域都非常重要。在这里,我们提出了一个主动的元镜来动态地控制宽带的电磁极化状态。该超镜面由双层金属图案组成,该图案由金属平板支撑,并且PIN二极管的有源元件集成到该超原子中,以控制两个正交偏振模式之间的反射相位差。通过切换PIN二极管的工作状态,该元镜有望实现三种极化状态,分别为左旋,右旋圆极化和线性极化。我们制造了这个有源元镜,并通过测量验证了其偏振转换性能。线性偏振入射波可以在3.4至8.8 GHz的频率范围内动态转换为右旋或左旋圆偏振,平均损耗为1dB。此外,它还可以保持其初始线性极化状态。

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