光子学
制作
材料科学
灵活性(工程)
弯曲
硫系玻璃
光电子学
硫系化合物
弯曲半径
光子集成电路
毫米
纳米技术
电子工程
计算机科学
光学
工程类
复合材料
物理
医学
统计
替代医学
数学
病理
作者
Lan Li,Hongtao Lin,Shutao Qiao,Yi Zou,Sylvain Danto,Kathleen Richardson,J. David Musgraves,Nanshu Lu,Juejun Hu
出处
期刊:Nature Photonics
[Nature Portfolio]
日期:2014-06-29
卷期号:8 (8): 643-649
被引量:313
标识
DOI:10.1038/nphoton.2014.138
摘要
Photonic integration on plastic substrates enables emerging applications ranging from flexible interconnects to conformal sensors on biological tissues. Such devices are traditionally fabricated using pattern transfer, which is complicated and has limited integration capacity. Here we pioneered a monolithic approach to realize flexible, high-index-contrast glass photonics with significantly improved processing throughput and yield. Noting that the conventional multilayer bending theory fails when laminates have large elastic mismatch, we derived a mechanics theory accounting for multiple neutral axes in one laminated structure to accurately predict its strain-optical coupling behavior. Through combining monolithic fabrication and local neutral axis designs, we fabricated devices that boast record optical performance (Q=460,000) and excellent mechanical flexibility enabling repeated bending down to sub-millimeter radius without measurable performance degradation, both of which represent major improvements over state-of-the-art. Further, we demonstrate that our technology offers a facile fabrication route for 3-D high-index-contrast photonics difficult to process using traditional methods.
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