Planar chalcogenide glass mid-infrared photonics

Hongtao Lin, Lan Li, Yi Zou, F. Deng, C. Ni, S. Danto, J. D. Musgraves, K. Richardson, Stephen T. Kozacik, Maciej Murakowski, D. Prather, Juejun Hu
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Abstract

Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, have emerged as a promising material candidate for mid-infrared integrated photonics given their wide optical transparency window, high linear and nonlinear indices, as well as their capacity for monolithic integration on a wide array of substrates. Exploiting these unique features of the material, we demonstrated high-index-contrast, waveguide-coupled As2Se3 chalcogenide glass resonators monolithically integrated on silicon with a high intrinsic quality factor of 2 × 105 at 5.2 micron wavelength, and what we believe to be the first waveguide photonic crystal cavity operating in the mid-infrared.
平面硫系玻璃中红外光子学
硫系玻璃,即含有硫、硒和/或碲的无定形化合物,由于其宽的光学透明窗口、高线性和非线性指数以及在各种衬底上的单片集成能力,已成为中红外集成光子学的有前途的候选材料。利用材料的这些独特特性,我们展示了高折射率对比度,波导耦合As2Se3硫系玻璃谐振器单片集成在硅上,在5.2微米波长具有2 × 105的高内在质量因子,我们相信这是第一个在中红外波段工作的波导光子晶体腔。
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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