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Electro-optically Tunable Multifunctional Metasurfaces

机译:电光可调多功能元件

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摘要

Shaping the flow of light at the nanoscale has been a grand challenge for nanophotonics over decades. It is now widely recognized that metasurfaces represent a chip-scale nanophotonics array technology capable of comprehensively controlling the wavefront of light via appropriately configuring subwavelength antenna elements. Here, we demonstrate a reconfigurable metasurface that is multifunctional, i.e., notionally capable of providing diverse optical functions in the telecommunication wavelength regime, using a single compact, lightweight, electronically controlled array with no moving parts. By electro-optical control of the phase of the scattered light from each identical individual metasurface element in an array, we demonstrate a single prototype multifunctional programmable metasurface that is capable of both dynamic beam steering and reconfigurable light focusing. Reconfigurable multifunctional metasurfaces with arrays of tunable optical antennas thus can perform arbitrary optical functions by programmable array-level control of scattered light phase, amplitude, and polarization, similar to dynamic and programmable memories in electronics.
机译:塑造纳米尺度的光流是几十年来纳米光线的大挑战。现在普遍认识到,元件代表了一种芯片级纳米光电学阵列阵列技术,其能够通过适当地配置子波长天线元件全面地控制光的波前。在这里,我们展示了一种可重新配置的元表面,其是多功能的,即概念能够在电信波长方形中提供不同的光学功能,使用单个结构紧凑,轻的电子控制阵列,没有移动部件。通过从每个相同的各个元表面元件的散射光的电光控制在阵列中,我们展示了一种能够动态波束转向和可重新配置光聚焦的单个原型多功能可编程元表面。因此,具有可调谐光天线阵列的可重新配置的多功能元件可以通过散射光相位,幅度和极化的可编程阵列控制来执行任意光学功能,类似于电子设备中的动态和可编程存储器。

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