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High-throughput patterning of photonic structures with tunable periodicity

机译:具有可调周期的光子结构的高通量构图

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摘要

A patterning method termed “RIPPLE” (reactive interface patterning promoted by lithographic electrochemistry) is applied to the fabrication of arrays of dielectric and metallic optical elements. This method uses cyclic voltammetry to impart patterns onto the working electrode of a standard three-electrode electrochemical setup. Using this technique and a template stripping process, periodic arrays of Ag circular Bragg gratings are patterned in a high-throughput fashion over large substrate areas. By varying the scan rate of the cyclically applied voltage ramps, the periodicity of the gratings can be tuned in situ over micrometer and submicrometer length scales. Characterization of the periodic arrays of periodic gratings identified point-like and annular scattering modes at different planes above the structured surface. Facile, reliable, and rapid patterning techniques like RIPPLE may enable the high-throughput and low-cost fabrication of photonic elements and metasurfaces for energy conversion and sensing applications.
机译:称为“波纹”的图案化方法(通过光刻电化学促进的反应性界面图案化)被应用于介电和金属光学元件的阵列的制造。该方法使用循环伏安法将图案施加到标准三电极电化学装置的工作电极上。使用这种技术和模板剥离工艺,可以在大基板面积上以高通量方式对Ag圆形布拉格光栅的周期性阵列进行构图。通过改变周期性施加的电压斜坡的扫描速率,可以在微米和亚微米长度刻度上原位调整光栅的周期性。周期性光栅的周期性阵列的表征在结构化表面上方的不同平面处识别出点状和环形散射模式。像RIPPLE这样的简便,可靠和快速的构图技术,可以实现光子元件和超表面的高通量和低成本制造,以用于能量转换和传感应用。

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