Zhang Lin-Jing, Chen Jin-Zhong, Yang Shao-Peng, Wei Yan-Hong, Guo Qing-Lin
College of Physics Science and Technology, Hebei University, Baoding 071002, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2010 May;30(5):1175-8.
In order to improve the radiation characteristic of laser-induced plasma, with the national standard soil taken as the target sample, a laser spectrum analytical system which composed of a high-energy neodymium glass laser, a multifunctional and compact integrated spectrometer, and a CCD detector was used to detect the influence of the NaCl sample additive on the laser plasma radiation intensity. The electron temperature and the electron density of the plasmas were also calculated from the lines intensity and stark broadening of emission spectral line respectively. The experimental results indicated that with the increase in the NaCl additive, the spectral intensity, signal-to-background ratio, the electron temperature, and the electron density all went up firstly and then down. When 15% NaCl was added, the radiation intensity of the plasma reached the maximum value, the spectral lines intensity of element Mn, K, Fe, and Ti increased by 39.2%, 42.5%, 53.9% and 33.8% compared to that without additive respectively, the spectral signal-to-background ratio increased by 64.4%, 84.39, 44.55% and 58.2% respectively, while the electron temperature and the electron density of the plasmas were heightened by 0.17 times and 0.36 times respectively.
为了改善激光诱导等离子体的辐射特性,以国家标准土壤为目标样品,采用由高能钕玻璃激光器、多功能紧凑型集成光谱仪和电荷耦合器件(CCD)探测器组成的激光光谱分析系统,检测NaCl样品添加剂对激光等离子体辐射强度的影响。还分别根据发射光谱线的谱线强度和斯塔克展宽计算了等离子体的电子温度和电子密度。实验结果表明,随着NaCl添加剂含量的增加,光谱强度、信背比、电子温度和电子密度均先升高后降低。当添加15%的NaCl时,等离子体的辐射强度达到最大值,元素Mn、K、Fe和Ti的谱线强度分别比未添加添加剂时提高了39.2%、42.5%、53.9%和33.8%,光谱信背比分别提高了64.4%、84.39%、44.55%和58.2%,而等离子体的电子温度和电子密度分别提高了0.17倍和0.36倍。