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Broadband Spin-Selective Transmission Based on Dual-Layer 3D Chiral Metamaterial

机译:基于双层3D手性超材料的宽带自旋选择性

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Achieving polarization control of circularly polarized waves is of pivotal importance in the satellite communication, yet it poses a great challenge in broad operation band. This paper designs a dual-layer stereo structure to achieve efficient polarization separation of circularly polarized waves, which is composed of planar helices and foam blocks based on chiral metamaterial. The unit can effectively reflect the incident left-hand circularly polarized (LCP) wave, while allow the right-hand circularly polarized (RCP) wave to pass through it. The mechanism of spin selection is analyzed by the current distributions under the excitations of LCP and RCP waves. Numerical results show that the structure can effectively reflect LCP wave and transmit RCP wave within 9.1-15.4 GHz. The reflection and transmission efficiency are both above 0.9 and the fractional bandwidth reaches 51.4%.
机译:实现圆偏振波的偏振控制在卫星通信中具有关键的重要性,但它在广泛的操作带中构成了巨大的挑战。本文设计了一种双层立体结构,实现了圆偏振波的有效偏振分离,其由平面螺旋和基于手性超材料的泡沫块组成。该单元可以有效地反映入射左手圆极化(LCP)波,同时允许右手圆极化(RCP)波通过它。通过LCP和RCP波的激发下的电流分布分析旋转选择的机制。数值结果表明,该结构可以有效地反映LCP波并在9.1-15.4 GHz内发送RCP波。反射和传输效率高于0.9,分数带宽达到51.4%。

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