Wang Sheng, Liu Jing-Ru, Shao Jun, Hu Zhi-Yun, Tao Bo, Huang Mei-Sheng
Northwest Institute of Nuclear Technology, State Key Laboratory of Laser Interaction with Matter, Xi'an 710024, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2013 Aug;33(8):2060-3.
In order to develop a new sort of thermally sensitive phosphor coating, the emission spectrum thermally sensitivity of Mg4FGeO6 : Mn induced by laser was studied. The spectrum measurement system with heating function was set up, and the emission spectrum of Mg4FGeO6 : Mn at various temperatures were measured. Absorption spectrum was measured, and the mechanism of formation of the structure of double peak was analyzed with the perturbation theory of crystal lattice. The group of peaks around 630 nm is represented by the transitions 4F"2 to 4A2, whereas the group of peaks around 660 nm is due to the transitions 4F'2 to 4A2. The occupancy of both excited states 4F'2 and 4F"2 is in thermal equilibrium. Thus increasing temperature causes the intensity of the emission in the group around 630 nm to increase at the expense of the emission intensity of the group around 660 nm. The various spectral regions in emission differ with temperature, which could be used to support the intensity-ratio measurement method. The intensity-ratio change curve as a function of temperature was fitted, which shows that the range of temperature measurement is between room temperature and 800 K.
为了研制一种新型的热敏磷光体涂层,研究了激光诱导的Mg4FGeO6:Mn发射光谱的热敏感性。搭建了具有加热功能的光谱测量系统,测量了Mg4FGeO6:Mn在不同温度下的发射光谱。测量了吸收光谱,并利用晶格微扰理论分析了双峰结构的形成机理。630nm附近的峰组由4F″2到4A2的跃迁产生,而660nm附近的峰组则是由4F′2到4A2的跃迁产生。激发态4F′2和4F″2的占有率处于热平衡状态。因此,温度升高导致630nm附近峰组的发射强度增加,而以660nm附近峰组的发射强度为代价。发射光谱中的不同光谱区域随温度而变化,这可用于支持强度比测量方法。拟合了强度比随温度变化的曲线,结果表明温度测量范围在室温至800K之间。