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Flexible controls of scattering clouds using coding metasurfaces

机译:使用编码元锉散射云的灵活控制

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Metamaterials or metasurfaces have been designed to precisely manipulate the scattering at every angle. Here, we propose to control the probability of random scattering appearing in the desired range of angles, which is defined in this letter as scattering cloud. We present a controllable random metasurface by simply adding a random coding sequence to gradient coding sequence. It is shown that the direction and size of the scattering cloud can be arbitrarily engineered. We demonstrate the exotic behavior of the scattering cloud by making an analogy to the electron cloud in quantum mechanics. A new coding particle featuring low-interference with neighboring coding particles is designed to realize the controllable random surface, which demonstrates highly consistent results to the theoretical calculations using fast Fourier transform. The exciting phenomena and versatile behaviors of scattering clouds and their probabilities enabled by controllable random surfaces will lead to diversified applications in the fields of electromagnetic waves and acoustic waves.
机译:已经设计了超材料或元质地,以精确地操纵各个角度的散射。这里,我们建议控制随机散射的概率出现在所需的角度范围内,这在这封信中定义为散射云。我们通过简单地将随机编码序列添加到梯度编码序列来呈现可控随机元表面。结果表明,散射云的方向和尺寸可以任意设计。我们通过对量子力学中的电子云进行类比来证明散射云的异国情调行为。设计具有低干扰的新编码粒子与相邻编码颗粒具有低干扰,以实现可控的随机表面,这表明使用快速傅里叶变换的理论计算高度一致的结果。可控随机表面使能散射云的激发现象和散射行为及其使能的概率将导致电磁波和声波领域的多样化应用。

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