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Self-complementary metasurfaces for linear-to-circular polarization conversion

机译:自互补超表面用于线性到圆偏振转换

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摘要

In this work, we have demonstrated that self-complementary metasurfaces can provide linear-to-circular polarization conversion. For illustration of this general approach, we studied several particular structures based on periodic self-complementary patterns etched on metal sheets of negligible thickness. The advantage of using self-complementary metasurfaces over previous proposals of thin polarizers is the rigorous constancy of the phase difference between transmission (or reflection) coefficients corresponding to orthogonal linear polarizations, which is just 90° at any frequency. Also, this unusual phenomenon is stable under oblique incidence. The general proposed theory of self-complementary metasurfaces was first validated through numerical simulations for structures made of ideal lossless materials. Through simulations with realistic materials and experimental measurements, we have also demonstrated that this conversion can be reached in reality with high precision.
机译:在这项工作中,我们证明了自互补超表面可以提供线性到圆形的偏振转换。为了说明这种通用方法,我们研究了几种特殊的结构,这些结构基于在厚度可忽略不计的金属板上蚀刻的周期性自补图案。使用自互补形超表面优于薄偏振器的先前建议的优点是,与正交线性偏振相对应的透射(或反射)系数之间的相位差具有严格的恒定性,在任何频率下仅为90°。另外,这种异常现象在斜入射下也是稳定的。首先通过数值模拟对理想无损材料制成的结构进行了验证,提出了一般性的自互补形超表面理论。通过使用实际材料进行的模拟和实验测量,我们还证明了可以在现实中以高精度实现这种转换。

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