Investigation of 3D Refractive Index Contrast Variations in PVG Based Photo Printed Passive Optical Integrated Circuit Components.

D. Amarasinghe, D. Attygalle, S. Weragoda, Roshan Dodampola, S. Dehipawala
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引用次数: 2

Abstract

Integrated photonics will play an important role in future technologies and the advancement of optical integrated circuits (OICs) is unquestionably dependent on the ability to develop compact and reliable optical components at low cost. Here the authors investigate, the technological viability of a novel technology that has the potential to fabricate functional optical components and integrated them into miniaturized circuits. Three-dimensional refractive index patterns printed on porous vycor glass can be stabilized through consolidation of the glass matrix. The refractive index difference between low and high index regions or the refractive index contrast, is a key decider of the efficiency of those functional optical components. This paper discusses the 3D index contrast variations of photo-lithographically constructed volume Bragg gratings and their index contrast variation at the low and high index interface region. The study also examines the effect of matrix consolidation on the index pattern resolution.
基于PVG的光电印刷无源光学集成电路元件的三维折射率对比变化研究。
集成光子学将在未来技术中发挥重要作用,光学集成电路(oic)的进步无疑依赖于以低成本开发紧凑可靠的光学元件的能力。在这里,作者研究了一种新技术的技术可行性,该技术有可能制造功能性光学元件并将其集成到小型化电路中。三维折射率图案印刷在多孔vycor玻璃可以稳定通过巩固的玻璃基质。高低折射率区的折射率差或折射率对比,是决定功能性光学元件效率的关键因素。本文讨论了光刻体布拉格光栅的三维折射率对比变化及其在低折射率和高折射率界面区域的折射率对比变化。该研究还考察了矩阵巩固对指数模式分辨率的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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