The optical property of these sectors was studied by cathodoluminescence ( CL ). 通过阴极发光(CL)法(CL)可以研究这些区域的光学性能。
The cathodoluminescence images provide information on genesis and evolution histories of the host rocks. 阴极发光(CL)图像可以提供锆石成因类型及相应岩体经历的演化历史等信息。
Probing Surface and Stress Effect on Optical Properties of an Individual ZnO Nanowire via Cathodoluminescence 单根氧化锌纳米线表面与应力效应的阴极荧光谱研究阴极射线致发光荧光粉
The darker area was chosen for single genesis and low U content zircon with young age from cathodoluminescence images in order to obtain smaller error and higher precision dating data. 在测定具有单一成因、铀含量很低的年轻锆石时,选择在阴极发光(CL)较暗的位置进行测试,有利于得到误差小、精度更高的数据年龄。
The key to improve the efficiency of SSCL ( solid state cathodoluminescence ) is to improve the injection and acceleration of electrons in the accelerating layer. 这种复合加速层结构,尤其在高场下,对提高固态阴极射线的初电子源,从而提高其发光效率具有促进作用。