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Optically reconfigurable metasurfaces and photonic devices based on phase change materials

机译:基于相变材料的光学可重构超颖表面和光子设备

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Photonic components with adjustable parameters, such as variable-focal-length lenses or spectral filters, which can change functionality upon optical stimulation, could offer numerous useful applications. Tuning of such components is conventionally achieved by either micro- or nanomechanical actuation of their constituent parts, by stretching or by heating. Here, we report a novel approach for making reconfigurable optical components that are created with light in a non-volatile and reversible fashion. Such components are written, erased and rewritten as two-dimensional binary or greyscale patterns into a nanoscale film of phase-change material by inducing a refractive-index-changing phase transition with tailored trains of femtosecond pulses. We combine germanium-antimony-tellurium-based films with a diffraction-limited resolution optical writing process to demonstrate a variety of devices: visible-range reconfigurable bichromatic and multi-focus Fresnel zone plates, a super-oscillatory lens with subwavelength focus, a greyscale hologram, and a dielectric metamaterial with on-demand reflection and transmission resonances.
机译:具有可变参数的光子组件(例如可变焦距透镜或光谱滤光片)可以在光刺激后改变功能,可以提供许多有用的应用。通常通过微机械或纳米机械致动其组成部分,通过拉伸或加热来实现对这些组件的调节。在这里,我们报告了一种新颖的方法,用于制造可重构的光学组件,这些组件可以以非易失性和可逆的方式通过光来创建。通过用定制的飞秒脉冲序列引起折射率变化的相变,将这样的成分作为二维二进制或灰度图案写入,擦除和重写为相变材料的纳米级薄膜。我们将基于锗-锑-碲的薄膜与有限衍射分辨率的光学写入工艺相结合,以演示各种设备:可见光范围可重配置的双色和多焦点菲涅耳波带片,具有亚波长焦点的超振荡透镜,灰度全息图,以及具有按需反射和透射共振的介电超材料。

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