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Advanced Optical Programming of Individual Meta-Atoms Beyond the Effective Medium Approach

机译:超出有效介质方法的个体元原子的高级光学编程

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Nanometer-thick active metasurfaces (MSs) based on phase-change materials (PCMs) enable compact photonic components, offering adjustable functionalities for the manipulation of light, such as polarization filtering, lensing, and beam steering. Commonly, they feature multiple operation states by switching the whole PCM fully between two states of drastically different optical properties. Intermediate states of the PCM are also exploited to obtain gradual resonance shifts, which are usually uniform over the whole MS and described by effective medium response. For programmable MSs, however, the ability to selectively address and switch the PCM in individual meta-atoms is required. Here, simultaneous control of size, position, and crystallization depth of the switched phase-change material (PCM) volume within each meta-atom in a proof-of-principle MS consisting of a PCM-covered Al-nanorod antenna array is demonstrated. By modifying optical properties locally, amplitude and light phase can be programmed at the meta-atom scale. As this goes beyond previous effective medium concepts, it will enable small adaptive corrections to external aberrations and fabrication errors or multiple complex functionalities programmable on the same MS.
机译:基于相变材料(PCM)的纳米厚的活性元件(MSS)能够实现紧凑的光子元件,为偏振滤波,透镜和光束转向提供可调节的函数。通常,它们通过在急性不同的光学特性的两个状态之间完全切换整个PCM来具有多个操作状态。还利用PCM的中间状态以获得逐渐谐振换档,其通常在整个MS上均匀,并通过有效的介质响应描述。然而,对于可编程MSS,需要选择性地寻址和切换单个元原子中PCM的能力。这里,对由PCM覆盖的Al-NaNorod天线阵列组成的原理上的原则上的每个元原子内的切换相变材料(PCM)体积的尺寸,位置和结晶深度的同时控制。通过本地修改光学性质,可以在元 - 原子刻度下编程幅度和光相。由于这超出了先前的有效介质概念,它将使得能够对外像差和制造误差或同一MS上可编程的多个复杂功能来实现小的自适应校正。

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