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Temporal response of nonlinear transmission in optically thick saturable absorbers and determination of saturable absorption parameters

机译:光学厚度的可饱和吸收体中非线性传输的时间响应和可饱和吸收参数的确定

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摘要

The temporal response of nonlinear transmission in saturable absorbers is theoretically investigated on the basis of a four-energy-level model including an excited-state absorption, and is experimentally employed for determining saturable absorption parameters in saturable-dye-doped films. The approximation of optically thin absorbers is shown to be inadequate to this end. In theoretical calculations, optically thick saturable absorbers are treated by a set of simultaneous partial differential equations: a rate equation governing the dynamics of population densities of energy levels and a propagation equation governing the propagation of optical fields in the optically thick absorbers. By comparing experimental results with numerical ones, the saturable absorption parameters can be determined on the basis of the intensity dependence of response time. In numerical calculations, the effect of random orientation is also considered for optically anisotropic molecules rigidly fixed in saturable absorbing media. The characterization of the saturable absorption parameters is conducted by using uranine-doped poly(vinyl alcohol) films.
机译:理论上在包括激发态吸收的四能级模型的基础上研究了饱和吸收体中非线性传输的时间响应,并将其用于确定饱和染料掺杂薄膜中的饱和吸收参数。光学上薄的吸收体的近似被证明不足以达到这个目的。在理论计算中,光学厚的可饱和吸收体通过一组同时的偏微分方程处理:控制能量水平的人口密度动态的速率方程和控制光学厚的吸收体中光场的传播的传播方程。通过将实验结果与数值结果进行比较,可以基于响应时间的强度依赖性来确定可饱和吸收参数。在数值计算中,对于刚性固定在可饱和吸收介质中的光学各向异性分子,也要考虑随机取向的影响。可饱和吸收参数的表征是通过使用掺有尿素的聚乙烯醇薄膜进行的。

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