Zhang Meiling, Hu Guijun, Zhang Shengrui, Gao Dingshan, Sun Yadong, Wang Fei
College of Communication Engineering, Jilin University Changchun 130012 China
Wuhan National Laboratory for Optoelectronics & School of Optical and Electronic Information, Huazhong University of Science and Technology 1037 Luoyu Road Wuhan 430074 China.
RSC Adv. 2020 Mar 17;10(19):11148-11155. doi: 10.1039/c9ra09281a. eCollection 2020 Mar 16.
Waveguide amplifiers based on slot waveguide have enormous capacity due to their ability to confine light strongly to a narrow slot waveguide. NaYF:Er nanoparticles-polymeric methyl methacrylate covalently linked nanocomposites were synthesized and filled into the slot. The stability and the Er concentration doped in this novel material were improved. The slot waveguide was designed accurately. The rigorous numerical method, full-vector finite difference method, was used to analyze the modal characteristics and optimize the slot combined with the maximum power confinement in the slot and the minimum effective mode area of the slot. A four-level spectroscopic model pumped at 1480 nm was presented. The rate equations and propagation equations were solved and the gain characteristics of the slot waveguide amplifier were numerically simulated. The primary parameters were optimized. A net gain of 5.78 dB was achieved when the signal power was 0.001 mW at 1530 nm, pump power was 20 mW, Er concentration was 1.3 × 10 m, and the waveguide length was 1.5 cm.
基于槽型波导的波导放大器由于能够将光强烈限制在狭窄的槽型波导中而具有巨大的容量。合成了NaYF:Er纳米颗粒与聚甲基丙烯酸甲酯共价连接的纳米复合材料并填充到槽中。提高了这种新型材料的稳定性和掺杂的铒浓度。精确设计了槽型波导。采用严格的数值方法——全矢量有限差分法,结合槽内最大功率限制和槽的最小有效模式面积,分析模式特性并优化槽型。提出了一种在1480 nm泵浦的四能级光谱模型。求解了速率方程和传播方程,并对槽型波导放大器的增益特性进行了数值模拟。优化了主要参数。当在1530 nm处信号功率为0.001 mW、泵浦功率为20 mW、铒浓度为1.3×10 m且波导长度为1.5 cm时,实现了5.78 dB的净增益。