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Electronically-Controlled Beam-Steering through Vanadium Dioxide Metasurfaces

机译:通过二氧化钒元件的电子控制光束转向

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Engineered metamaterials offer unique functionalities for manipulating the spectral and spatial properties of electromagnetic waves in unconventional ways. Here, we report a novel approach for making reconfigurable metasurfaces capable of deflecting electromagnetic waves in an electronically controllable fashion. This is accomplished by tilting the phase front of waves through a two-dimensional array of resonant metasurface unit-cells with electronically-controlled phase-change materials embedded inside. Such metasurfaces can be placed at the output facet of any electromagnetic radiation source to deflect electromagnetic waves at a desired frequency, ranging from millimeter-wave to far-infrared frequencies. Our design does not use any mechanical elements, external light sources, or reflectarrays, creating, for the first time, a highly robust and fully-integrated beam-steering device solution. We demonstrate a proof-of-concept beam-steering metasurface optimized for operation at 100?GHz, offering up to 44° beam deflection in both horizontal and vertical directions. Dynamic control of electromagnetic wave propagation direction through this unique platform could be transformative for various imaging, sensing, and communication applications, among others.
机译:设计的超材料提供了独特的功能,用于操纵电磁波以非常规方式的频谱和空间特性。在这里,我们报告了一种新的方法,用于制作能够以电子可控的方式偏转电磁波的可重新配置的元件。这是通过通过嵌入内部的电子控制的相变材料倾斜波通过二维谐振元接口单元单元的二维阵列来实现这一点。这种元件可以放置在任何电磁辐射源的输出方面,以使电磁波以所需的频率偏转,从毫米波到远红外频率。我们的设计不使用任何机械元件,外部光源或反射阵列,首次创建高度坚固且完全集成的光束转向装置解决方案。我们展示了概念验证的横梁转向元表面,用于在100?GHz下进行操作,在水平和垂直方向上提供多达44°的横向偏转。通过该独特平台的电磁波传播方向的动态控制可以是各种成像,传感和通信应用的变换性。

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