论文标题

具有可调节焦点的多灶性Terahertz镜头

Multifocal Terahertz Lens with Adjustable Focal Points

论文作者

Abdolali, Ali, Kargar, Roya, Rouhi, Kasra

论文摘要

与元表面镜头(金属)相比,常规镜头的可调性缺陷始终限制其应用。另一方面,可重构金属提供了超薄厚度的好处,并具有可调性。因此,在单个跨表面上实现可重构功能,引起了潜在的Terahertz(THZ)应用的重大研究兴趣。在本文中,使用二氧化钒(VO2)提出了可调节的跨表面,以操纵电磁波并提供完整的反射阶段。相变元面由VO2纳米膜,硅垫片和结构底部嵌入的金层组成。通过使用特定相位分布的可重构跨表面,入射光束可以以任何任意方式收敛到确定点,包括焦点的数量,焦点位置和功率强度比。数值模拟表明,所提出的可重新配置的跨面可以按预期的反射模式中的一个或多个焦点集中力量。此外,基于VO2的跨表面可以使用新颖的方法以实时方式控制浓度宽度。模拟和理论结果非常吻合,以验证2位金属设计设计的有效性和可行性,这在无线高速通信和超分辨率成像中具有巨大潜力。

The conventional lens's tunability drawback always restricts their application compared to the metasurface lens (metalens). On the other side, reconfigurable metalenses offer the benefits of ultrathin thickness and capable of tunability. Therefore achieving reconfigurable functionalities in a single metasurface has attracted significant research interest for potential terahertz (THz) applications. In this paper, an adjustable metasurface is presented using Vanadium dioxide (VO2) to manipulate the electromagnetic waves and provide the full reflection phase. The phase-change metasurface is composed of a VO2 nanofilm, a silicon spacer, and a gold layer embedded in the structure's bottom. By employing the reconfigurable metasurface with the specific phase distribution, the incident beam can converge to determined points in any arbitrary manner, including the number of the focal points, focal points location, and power intensity ratio. Numerical simulations demonstrate that the proposed reconfigurable metasurface can concentrate power on one or more than one focal point in reflection modes as expected. Additionally, the VO2-based metasurface can control concentration width in a real-time manner using a novel proposed method. The simulation and theoretical results are in good agreement to verify the validity and feasibility of 2-bit metalens design, which has considerable potential in wireless high-speed communication and super-resolution imaging.

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