Li Hanyang, Hao Xiaolei, Li Yanzeng, Xu Li, Shi Bojian, Liu Lu
Opt Lett. 2020 Feb 15;45(4):815-818. doi: 10.1364/OL.383024.
An all-optical tunable whispering gallery mode (WGM) lasing from the liquid-filled hollow glass microsphere (LFHGM) is proposed and experimentally verified. The LFHGM-based microlaser is prepared by injecting ${{\rm NaNdF}_4}/{\rm dye}$NaNdF/dye co-doped liquid into the HGM, and WGM resonance is obtained under excitation of a 532 nm pulse laser. Since the high-efficiency absorption of the 793 nm continuous-wave laser by ${{\rm NaNdF}_4}$NaNdF nanocrystals (NCs) can result in photothermal effect-induced effective refractive index change of the microcavity, a secondary 793 nm laser is irradiated into the LFHGM to excite the ${{\rm NaNdF}_4}$NaNdF dispersed in the liquid core, thereby realizing a shift of resonant frequencies. The influence of the doping concentration of ${{\rm NaNdF}_4}$NaNdF NCs on the tuning range and the sensitivity over the power intensity range of $0{-}1.{68};{{\rm W/mm}^2}$0-1.68W/mm are investigated experimentally, obtaining maximum values of 4.95 and ${2}.{95};{\rm nm/}({\rm W};{{\rm mm}^{ - 2}})$2.95nm/(Wmm). The ability to generate stable lasing in a LFHGM cavity highlights the practical application of the microscale lasers in future all-optical networks.
提出并通过实验验证了一种基于充液空心玻璃微球(LFHGM)的全光可调谐回音壁模式(WGM)激光。基于LFHGM的微激光器是通过将${\rm NaNdF}_4$/染料共掺杂液体注入HGM制备而成的,并且在532 nm脉冲激光的激发下获得了WGM共振。由于${\rm NaNdF}_4$纳米晶体(NCs)对793 nm连续波激光的高效吸收会导致光热效应引起微腔有效折射率的变化,因此将二次793 nm激光照射到LFHGM中以激发分散在液芯中的${\rm NaNdF}_4$,从而实现共振频率的偏移。实验研究了${\rm NaNdF}_4$ NCs的掺杂浓度对调谐范围以及在0 - 1.68 ${\rm W/mm}^2$功率强度范围内的灵敏度的影响,获得的最大值分别为4.95和2.95 ${\rm nm/(W};{{\rm mm}^{ - 2}})$。在LFHGM腔中产生稳定激光的能力突出了微尺度激光器在未来全光网络中的实际应用。