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Convolution Operations on Coding Metasurface to Reach Flexible and Continuous Controls of Terahertz Beams

机译:编码超表面上的卷积运算以达到太赫兹光束的灵活连续控制

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Abstract The concept of coding metasurface makes a link between physically metamaterial particles and digital codes, and hence it is possible to perform digital signal processing on the coding metasurface to realize unusual physical phenomena. Here, this study presents to perform Fourier operations on coding metasurfaces and proposes a principle called as scattering-pattern shift using the convolution theorem, which allows steering of the scattering pattern to an arbitrarily predesigned direction. Owing to the constant reflection amplitude of coding particles, the required coding pattern can be simply achieved by the modulus of two coding matrices. This study demonstrates that the scattering patterns that are directly calculated from the coding pattern using the Fourier transform have excellent agreements to the numerical simulations based on realistic coding structures, providing an efficient method in optimizing coding patterns to achieve predesigned scattering beams. The most important advantage of this approach over the previous schemes in producing anomalous single-beam scattering is its flexible and continuous controls to arbitrary directions. This work opens a new route to study metamaterial from a fully digital perspective, predicting the possibility of combining conventional theorems in digital signal processing with the coding metasurface to realize more powerful manipulations of electromagnetic waves.
机译:摘要编码超表面的概念将物理超材料颗粒与数字代码联系起来,因此可以对编码超表面执行数字信号处理,以实现异常的物理现象。在这里,这项研究提出了在编码超表面上执行傅立叶运算,并提出了一种使用卷积定理的称为散射图样移位的原理,该原理允许将散射图样转向任意预定的方向。由于编码颗粒的反射幅度恒定,所以可以通过两个编码矩阵的模量简单地获得所需的编码图案。这项研究表明,使用傅里叶变换从编码图案直接计算出的散射图案与基于实际编码结构的数值模拟具有极好的一致性,为优化编码图案以实现预先设计的散射束提供了一种有效的方法。这种方法在产生异常单光束散射方面比以前的方案最重要的优势是它可以灵活,连续地控制任意方向。这项工作为从全数字的角度研究超材料开辟了一条新途径,预测了将数字信号处理中的传统定理与编码超表面相结合以实现更强大的电磁波操纵的可能性。

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