Zimnyakov D A, Volchkov S S, Kochkurov L A, Kochubey V I, Melnikov A G, Melnikov G V
Opt Express. 2021 Jan 18;29(2):2309-2331. doi: 10.1364/OE.415566.
The features of fluorescence emission in a dye-doped dense multiple scattered medium under pulsed laser pumping are considered in terms of confined excitation in small zones associated with laser speckles occurring in a pumped medium. The results of numerical modeling of the fluorescence emission kinetics are compared to the experimental data obtained using the rhodamine 6G-doped layers of the densely packed TiO (anatase) particles pumped at 532 nm by 10 ns laser pulses. The intensity of pump radiation during the action of laser pulses was varied from 1·10 W/cm to 5·10 W/cm. In the recovery of the ratios of stimulated to a spontaneous emission, the spectra of the stimulated component were fitted using the spectral function derived by R. Dicke. In the framework of the considered concept, saturation of the ratio of the stimulated to a spontaneous emission and linear growth of an integrated fluorescence output with a practically unchangeable half-width of the emission spectra at high pump intensities are interpreted.
从与泵浦介质中出现的激光散斑相关的小区域内的受限激发角度,研究了脉冲激光泵浦下染料掺杂致密多重散射介质中的荧光发射特性。将荧光发射动力学的数值模拟结果与使用由10 ns激光脉冲在532 nm波长下泵浦的紧密堆积TiO(锐钛矿)颗粒的罗丹明6G掺杂层获得的实验数据进行了比较。激光脉冲作用期间泵浦辐射的强度在1·10 W/cm至5·10 W/cm之间变化。在恢复受激发射与自发发射的比率时,使用R. Dicke推导的光谱函数拟合受激分量的光谱。在所考虑的概念框架内,解释了在高泵浦强度下受激发射与自发发射的比率饱和以及积分荧光输出的线性增长,且发射光谱的半高宽实际上不变。