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Improved Two-Temperature Model and Its Application in Ultrashort Laser Heating of Metal Films

机译:改进的两温模型及其在金属膜超短激光加热中的应用

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摘要

The two-temperature model has been widely used to predict the electron and phonon temperature distributions in ultrashort laser processing of metals. However, estimations of some important thermal and optical properties in the existing two-temperature model are limited to low laser fluences in which the electron temperatures are much lower than the Fermi temperature. This paper extends the existing two-temperature model to high electron temperatures by using full-run quantum treatments to calculate the significantly varying properties, including the electron heat capacity, electron relaxation time, electron conductivity, reflectivity, and absorption coefficient. The proposed model predicts the damage thresholds more accurately than the existing model for gold films when compared with published experimental results.
机译:两温模型已被广泛用于预测金属的超短激光加工中电子和声子的温度分布。但是,在现有的两温模型中,对某些重要的热和光学性质的估计仅限于低激光通量,其中电子温度远低于费米温度。本文通过使用完整的量子处理来计算包括电子热容量,电子弛豫时间,电子电导率,反射率和吸收系数在内的显着变化的特性,从而将现有的两温模型扩展到高电子温度。与公开的实验结果相比,该模型比现有的金膜模型更准确地预测了损伤阈值。

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