Electron-density measurements have been made in a CuCl/Ne discharge using a CO2 laser interferometer. A local maximum followed by a local minimum in electron density have been found to move a higher tube temperature with higher buffer pressure. Extrema in Cu/CuCl double-pulsed laser energy may be correlated with the extrema in electron density. An analysis based on rate equations yields qualitative agreement with measured laser-pulse energies. The results support the idea that ionization of copper is primarily responsible for the decrease of laser output as the tube temperature is increased.
展开▼
机译:已经使用CO2激光干涉仪在CuCl / Ne放电中进行了电子密度测量。已经发现,电子密度的局部最大值随后是局部最小值会在较高的缓冲压力下移动较高的管温度。 Cu / CuCl双脉冲激光能量的极值可能与电子密度的极值相关。基于速率方程的分析得出与测得的激光脉冲能量的定性一致性。结果支持这样的想法,即铜的离子化主要是随着管温度的升高而导致激光输出的降低。
展开▼