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Algorithm design of a Rubik metamaterial for sextuple orbital angular momentums

机译:六轨角动量Rubik超材料算法设计

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摘要

This letter presents a Rubik metamaterial with sextuple orbital angular momentum (OAM) capabilities. The design is based on a comprehensive algorithm that draws inspiration from the Rubik's cube. This metamaterial can generate multiple phased vortex waves using only one model and is easily constructed from metallic blocks with varying heights. The performance of the metamaterial is verified at 18 GHz with a gain of over 30 dB. A faster verification process is achieved using an automated program based on macroscript for height-adjusted Rubik metamaterials, which is more efficient than manual operations. By calculating the purity of the sextuple OAMs, it can be determined that the Rubik model is capable of generating multiple phased vortex wave beams as effectively as possible. This Rubik metamaterial has potential applications in experimental and educational settings, particularly with the growing trend in three-dimensional printing.
机译:这封信介绍了一种具有六重轨道角动量 (OAM) 能力的 Rubik 超材料。该设计基于从魔方中汲取灵感的综合算法。这种超材料仅使用一个模型即可产生多个相位涡旋波,并且很容易由不同高度的金属块构建而成。超材料的性能在18 GHz下得到验证,增益超过30 dB。使用基于宏观脚本的自动化程序实现更快的验证过程,用于高度调整的魔方超材料,这比手动操作更有效。通过计算六相涡旋波束的纯度,可以确定Rubik模型能够尽可能有效地产生多个相位涡旋波束。这种魔方超材料在实验和教育环境中具有潜在的应用,特别是随着三维打印的增长趋势。

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