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Dynamic control of asymmetric electromagnetic wave transmission by active chiral metamaterial

机译:活性手性超材料对非对称电磁波传输的动态控制

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摘要

The asymmetric transmission of electromagnetic (EM) wave can be fully manipulated by chiral metamaterials, but little can achieve real-time and high efficient tunability due to challenges in practically deployable solutions. Here, we proposed a new scheme for flexibly and dynamically controlling the asymmetric EM wave transmission at microwave frequencies using planar metamaterial of deep subwavelength thickness incorporated with active components of PIN diodes. The asymmetric transmission of linearly polarized EM wave exhibits a high efficiency and a pronounced real-time continuous tunability controlled by the external stimulation of voltage biasing. In addition, the asymmetric transmission effect can be well preserved at large oblique incident angle up to ±70°. The design principle and EM performance are validated by both full wave simulations and experimental measurements. Such dynamically controllable chiral metamaterial may provide robust and flexible approach to manipulate EM wave propagation, as well as to facilitate EM device integration to create diverse functionalities.
机译:电磁(EM)波的非对称传输可以通过手性超材料来完全控制,但是由于实际部署的解决方案中的挑战,很少能实现实时和高效的可调谐性。在这里,我们提出了一种新的方案,该方案可以使用深亚波长厚度的平面超材料结合PIN二极管的有源组件,灵活动态地控制微波频率下的非对称EM波传输。线性极化EM波的不对称传输表现出高效率,并通过外部偏置电压的刺激来控制实时的连续可调性。另外,在高达±70°的大倾斜入射角下,也可以很好地保持不对称的透射效果。全波仿真和实验测量均验证了设计原理和EM性能。这种可动态控制的手性超材料可以提供鲁棒且灵活的方法来操纵EM波的传播,以及促进EM设备集成以创建各种功能。

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