Sennaroglu A
Optoelectronics Laboratory, Department of Physics, Koc University, Cayir Caddesi No 5, Instinye, Istanbul 80860, Turkey.
Appl Opt. 1999 May 20;38(15):3334-7. doi: 10.1364/ao.38.003334.
Rate-equation analysis has been used in an investigation of the role of saturation and excited-state absorption in the power transmission characteristics and thermal lensing of an absorber. Use of an iterative approach gives explicit analytical results for power transmission and thermal focal length in the presence of excited-state absorption. Sample calculations indicate that pump absorption can increase or decrease with increasing incident pump power, depending on the relative strength of the excited-state absorption cross section with respect to the ground-state absorption cross section. In the case of thermal lensing, results further indicate that saturation and excited-state absorption act as two competing effects, the former reducing the strength of the thermal lens and the latter causing the opposite effect. The analytical formulas derived in this analysis should prove useful to experimentalists in determination of ground-state and excited-state absorption cross sections from experimental power transmission and lensing data.
速率方程分析已被用于研究饱和与激发态吸收在吸收体的功率传输特性和热透镜效应中的作用。采用迭代方法可得出存在激发态吸收时功率传输和热焦距的明确解析结果。示例计算表明,泵浦吸收会随着入射泵浦功率的增加而增加或减少,这取决于激发态吸收截面相对于基态吸收截面的相对强度。在热透镜效应的情况下,结果进一步表明,饱和与激发态吸收起着两种相互竞争的作用,前者降低热透镜的强度,而后者则产生相反的效果。该分析中推导的解析公式对于实验人员根据实验功率传输和透镜效应数据确定基态和激发态吸收截面应是有用的。