Niu Ben, Shi Xiaoyu, Ge Kun, Ruan Jun, Xu Zhiyang, Zhang Shuai, Guo Dan, Zhai Tianrui
College of Physics and Optoelectronics, Faculty of Science, Beijing University of Technology Beijing 100124 China
Nanoscale Adv. 2022 Mar 30;4(9):2153-2158. doi: 10.1039/d2na00025c. eCollection 2022 May 3.
An all-optical tunable whispering gallery mode (WGM) laser pumped by a laser diode is proposed. The laser is fabricated by filling a silica capillary with a light-emitting conjugated polymer solution. Based on the thermo-optic effect of the hydroxyl groups in the polymer and capillary, the effective refractive index of the WGM cavity changes by the auxiliary irradiation of the laser, and the wavelength of the WGM mode shifts correspondingly. The emission wavelength was continuously tuned over 13 nm with the irradiation power intensity changing from 0 to 22.41 W cm, showing a corresponding tuning rate of 0.58 nm W cm. The wavelength tuning process has a fast response time that is within 2.8 s. It shows strong stability, with the output intensity showing no obvious attenuation after 100 minutes of operation. The proposed laser exhibits good repeatability, stability and high tuning efficiency, and could be applied as a light source for on-chip devices.
提出了一种由激光二极管泵浦的全光可调谐回音壁模式(WGM)激光器。该激光器通过在二氧化硅毛细管中填充发光共轭聚合物溶液制成。基于聚合物和毛细管中羟基的热光效应,通过激光的辅助照射,WGM腔的有效折射率发生变化,WGM模式的波长相应地移动。随着照射功率强度从0变化到22.41 W/cm,发射波长连续调谐超过13 nm,相应的调谐速率为0.58 nm/W/cm。波长调谐过程具有快速响应时间,在2.8 s以内。它显示出很强的稳定性,运行100分钟后输出强度没有明显衰减。所提出的激光器具有良好的重复性、稳定性和高调谐效率,可作为片上器件的光源。