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Ultrafast thermalization dynamics of gold-coated fused silica irradiated by a femtosecond laser

机译:飞秒激光辐照镀金熔融石英的超快热力学

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摘要

The ultrafast thermalization dynamics in gold-coated fused silica irradiated by femtosecond laser are numerically investigated by Finite Element Method (FEM). The temporally sequential thermal relaxation model, which jointly considers the two temperature relaxation and the thermal diffusion relaxation dynamics is proposed for explaining the thermalization characteristics in gold-coated fused silica system. It is revealed that the gold layer thickness of 0.6 μm is the critical thickness for influencing the temperature distribution across gold-coated fused silica system. In addition, the effect of gold layer thickness on thermalization dynamics of gold-coated fused silica system is examined in detail.
机译:用有限元方法(FEM)对飞秒激光辐照的镀金熔融石英中的超快热动力学进行了数值研究。提出了同时考虑两个温度弛豫和热扩散弛豫动力学的时间顺序热弛豫模型,以解释镀金熔融二氧化硅体系的热化特性。结果表明,0.6微米的金层厚度是影响整个镀金熔融石英体系温度分布的关键厚度。另外,详细研究了金层厚度对金包被的熔融二氧化硅体系热动力学的影响。

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