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Tunable Metasurfaces: A Polarization Rotator Design

机译:可调谐元件:极化旋转器设计

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Metasurfaces have enabled unprecedented control over electromagnetic waves, providing new opportunities in areas such as wireless communications, energy harvesting, imaging, and cloaking. Despite significant progress in this area, most metasurface designs provide static functionalities. Here, we theoretically propose and experimentally validate a transparent metasurface with dynamically tunable properties. Notably, we present an electronically tunable metasurface that is capable of rotating the polarization of an arbitrarily polarized incident wave, without changing its axial ratio. The designed polarization rotator consists of a tunable birefringent structure sandwiched between two ± 45 ° rotated metasurface-based quarter-wave plates. The birefringent structure is a bandpass metasurface which relies on integrated varactor diodes for tunability. Through a simple biasing mechanism, different voltages are applied to the diodes to rotate the polarization of a transmitted wave. The proposed idea may find application in various areas where dynamic polarization control is required.
机译:Metasurfaces已启用前所未有的对电磁波控制,在无线通信,能量收集,成像和粘附等领域提供新的机会。尽管在该领域取得了重大进展,但大多数元面设计都提供静态功能。在这里,我们理论上提出并通过动态调谐属性实验和实验验证透明的元曲面。值得注意的是,我们介绍了一种电子可调谐的元表面,其能够旋转任意偏振的入射波的偏振,而不改变其轴向比。设计的偏振旋转器由可调谐双折射结构组成,夹在两±45°旋转的基于元表面的四分之一波动板之间。双折射结构是带通元件表面,依赖于集成的变容二极管进行可调性。通过简单的偏置机构,将不同的电压施加到二极管以旋转透射波的偏振。所提出的想法可能在需要动态偏振控制的各个区域中找到应用程序。

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