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Dynamical control on helicity of electromagnetic waves by tunable metasurfaces

机译:可调谐超表面对电磁波螺旋度的动态控制

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摘要

Manipulating the polarization states of electromagnetic (EM) waves, a fundamental issue in optics, attracted intensive attention recently. However, most of the devices realized so far are either too bulky in size, and/or are passive with only specific functionalities. Here we combine theory and experiment to demonstrate that, a tunable metasurface incorporating diodes as active elements can dynamically control the reflection phase of EM waves, and thus exhibits unprecedented capabilities to manipulate the helicity of incident circular-polarized (CP) EM wave. By controlling the bias voltages imparted on the embedded diodes, we demonstrate that the device can work in two distinct states. Whereas in the “On” state, the metasurface functions as a helicity convertor and a helicity hybridizer within two separate frequency bands, it behaves as a helicity keeper within an ultra-wide frequency band in the “Off” state. Our findings pave the way to realize functionality-switchable devices related to phase control, such as frequency-tunable subwavelength cavities, anomalous reflectors and even holograms.
机译:最近,操纵电磁波(EM)的偏振态是光学领域的一个基本问题,引起了人们的广泛关注。然而,迄今为止实现的大多数设备要么体积太大,和/或仅具有特定功能就无源。在这里,我们结合理论和实验证明,以二极管为有源元件的可调谐超表面可以动态控制EM波的反射相位,因此具有空前的能力来处理入射圆极化(CP)EM波的螺旋度。通过控制施加在嵌入式二极管上的偏置电压,我们证明了该器件可以在两种不同的状态下工作。在“打开”状态下,超颖表面在两个单独的频带内充当螺旋转换器和螺旋混合器,而在“关闭”状态下,超表面在超宽频带内充当螺旋保持器。我们的发现为实现与相位控制相关的功能可切换设备铺平了道路,例如频率可调的亚波长腔,反光镜甚至全息图。

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