磷酸盐玻璃
材料科学
净收益
波导管
光放大器
光学
光子学
兴奋剂
激光器
光电子学
飞秒
放大器
插入损耗
CMOS芯片
物理
作者
Xiangyu Sun,Zhi Chen,Liaolin Zhang,Daoyuan Chen,Yuying Wang,Beibei Xu,Zhijun Ma,Giuseppe Barillaro,Lijing Zhong,Jianrong Qiu
出处
期刊:Optics Letters
[The Optical Society]
日期:2023-12-04
卷期号:49 (1): 33-33
被引量:9
摘要
High-gain materials and high-quality structures are the two main conditions that determine the amplification performance of optical waveguides. However, it has been hard to balance each other, to date. In this work, we demonstrate breakthroughs in both glass optical gain and optical waveguide structures. We propose a secondary melting dehydration technique that prepares high-quality Er 3+ –Yb 3+ co-doped phosphate glass with low absorption loss. Additionally, we propose a femtosecond laser direct-writing technique that allows controlling the cross section, size, and mode field of waveguides written in glass with high accuracy, leveraging submicron-resolution multi-scan direct-writing optical waveguide technology, which is beneficial for reducing insertion loss. As a proof of concept demonstration, we designed and fabricated two kinds of waveguides, namely, LP 01 - and LP 11 -mode waveguides in the Er 3+ –Yb 3+ co-doped phosphate glass, enabling insertion loss as low as 0.9 dB for a waveguide length of 2 mm. Remarkably, we successfully achieved an optical amplification for both the waveguides with a net gain of >7 dB and a net-gain coefficient of >3.5 dB/mm, which is approximately one order of magnitude larger than that in the Er 3+ –Yb 3+ co-doped phosphate glass fabricated by the traditional melt-quenching method. This will open new avenues toward the development of integrated photonic chips.
科研通智能强力驱动
Strongly Powered by AbleSci AI