首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Microscopic and macroscopic simulations for femtosecond-laser-matter interaction by cubic interpolated propagation method - art. no. 066408
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Microscopic and macroscopic simulations for femtosecond-laser-matter interaction by cubic interpolated propagation method - art. no. 066408

机译:飞秒激光-物质相互作用的微观和宏观模拟,采用三次插值传播方法-艺术。没有。 066408

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摘要

We performed 1.5-dimensional simulation for the Fokker-Planck equation using the CIP (cubic-interpolated propagation/constrained interpolation profile) method to investigate femtosecond-laser heating and transport processes. We found that the heat flux in the solid part approaches the Spitzer-Harm theory on quite a short time scale omega(p)t<50, and thus the subsequent evaporation process can be analyzed by classical thermal conduction. On the basis of this result, we performed a hydrodynamic simulation using the CIP method with classical thermal conduction in order to investigate the long time behavior of the evaporation process. The experimental ablation depth was replicated very well, showing that even femtosecond pulse laser processing can be satisfactorily described by classical heat conduction. Since the damage size is shown to be much larger than laser-spot size even in such an ultrashort-pulse experiment, we must use the fluence estimated by the damage size, which is twice as large as the laser spot, to correctly replicate the experiments. [References: 18]
机译:我们使用CIP(三次插值传播/约束插值曲线)方法对Fokker-Planck方程进行了1.5维模拟,以研究飞秒激光的加热和传输过程。我们发现,固体部分中的热通量在很短的时间尺度ω(p)t <50上接近Spitzer-Harm理论,因此可以通过经典的热传导来分析随后的蒸发过程。基于此结果,我们使用经典热传导的CIP方法进行了流体动力学模拟,以研究蒸发过程的长时间行为。实验烧蚀深度被很好地复制,表明即使飞秒脉冲激光加工也可以通过经典的热传导令人满意地描述。由于即使在这种超短脉冲实验中,损伤的大小也显示出比激光斑的大小大得多,因此,我们必须使用由损伤大小估算出的注量(是激光斑的两倍)来正确地重复实验。 [参考:18]

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