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Ultraviolet imprinting and aligned ink-jet printing for multilayer patterning of electro-optic polymer modulators

机译:用于电光聚合物调制器多层图案的紫外线压印和对齐喷墨打印

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The present work demonstrates an electro-optic polymer-based Mach-Zehnder (MZ) modulator fabricated utilizing advanced ultraviolet (UV) imprinting and aligned ink-jet printing technologies for patterning and layer deposition. The bottom electrode layer is designed and directly ink-jet printed on the substrate to form the patterned layer. The waveguide structure is formed into a bottom cladding polymer using a transparent flexible mold-based UV imprinting method. All other layers can be ink-jet printed. The top electrode is aligned and printed over the MZ arm. The modulator demonstrates a V-pi of 8 V at 3 kHz. This technology shows great potential in minimizing the fabrication complexity and roll-to-roll compatibility for manufacturing low cost, lightweight, and conformal modulators at high throughput.
机译:本工作展示了一种基于电光聚合物的马赫曾德尔(MZ)调制器,该调制器利用先进的紫外线(UV)压印和对齐的喷墨打印技术进行图案化和层沉积。设计底部电极层并将其直接喷墨印刷在基板上以形成图案层。使用透明的基于柔性模具的UV压印方法,将波导结构形成为底部覆层聚合物。所有其他层都可以喷墨打印。顶部电极对齐并打印在MZ臂上。调制器在3 kHz时表现出8 V的V-pi。该技术在最大程度地降低制造复杂性和卷对卷兼容性方面具有巨大潜力,可用于以高吞吐量制造低成本,轻巧和保形的调制器。

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