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首页> 外文期刊>Scientific reports. >High Quality 3D Photonics using Nano Imprint Lithography of Fast Sol-gel Materials
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High Quality 3D Photonics using Nano Imprint Lithography of Fast Sol-gel Materials

机译:高质量的3D光子用纳米印记光刻的快速溶胶 - 凝胶材料

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摘要

A method for the realization of low-loss integrated optical components is proposed and demonstrated. This approach is simple, fast, inexpensive, scalable for mass production, and compatible with both 2D and 3D geometries. The process is based on a novel dual-step soft nano imprint lithography process for producing devices with smooth surfaces, combined with fast sol-gel technology providing highly transparent materials. As a concrete example, this approach is demonstrated on a micro ring resonator made by direct laser writing (DLW) to achieve a quality factor improvement from one hundred thousand to more than 3 million. To the best of our knowledge this also sets a Q-factor record for UV-curable integrated micro-ring resonators. The process supports the integration of many types of materials such as light-emitting, electro-optic, piezo-electric, and can be readily applied to a wide variety of devices such as waveguides, lenses, diffractive elements and more.
机译:提出和说明了实现低损耗集成光学组件的方法。这种方法简单,快速,廉价,批量生产可扩展,与2D和3D几何形状兼容。该方法基于新型双步软纳米压印光刻工艺,用于制造具有光滑表面的装置,结合快速溶胶 - 凝胶技术,提供高度透明的材料。作为具体的例子,通过直接激光写入(DLW)制造的微环谐振器(DLW)上的微环谐振器证明了这种方法,以实现从一十万到300多万的质量因数改善。据我们所知,这也为UV可固化的集成微环谐振器设置了Q因子记录。该过程支持许多类型的材料(例如发光,电光,压电)的集成,并且可以容易地应用于多种装置,例如波导,透镜,衍射元件等。

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