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Analytical Solution of Laser Short-pulse Heating of Gold Films

机译:金膜激光短脉冲加热的解析解

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Laser short-pulse heating of metallic surfaces results in the thermal separation of electron and lattice sub-systems. In this case, the electron temperature well in excess of the lattice site temperature results. The process is concerned in the thermal coupling of two sub-systems and the resultant energy transport equation becomes hyperbolic for the timescales of time and space considered. In the present study, analytical solutions for electron and lattice site temperatures are obtained using a perturbation method. In the analysis, a gold film is used and the laser pulse intensity is varied exponentially. The absorption mechanism is assumed to follow an exponential decay within the absorption depth of the substrate material. It is found, that temporal behaviour of the electron temperature is similar to that corresponding to the laser pulse intensity, provided that both curves have different temporal gradients. The electron temperature decays wheas the lattice site temperature increases continuously with time.
机译:金属表面的激光短脉冲加热导致电子和晶格子系统的热分离。在这种情况下,导致电子温度大大超过晶格位点温度。该过程涉及两个子系统的热耦合,并且在所考虑的时间和空间时间尺度上,所得的能量传输方程变得双曲线。在本研究中,使用摄动方法获得了电子和晶格位点温度的解析解。在分析中,使用了金膜,并且激光脉冲强度呈指数变化。假设吸收机理在衬底材料的吸收深度内遵循指数衰减。发现,如果两条曲线具有不同的时间梯度,则电子温度的时间行为类似于对应于激光脉冲强度的时间行为。电子温度随着晶格位点温度随时间连续增加而衰减。

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