首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Characteristics of plume plasma and its effects on ablation depth during ultrashort laser ablation of copper in air
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Characteristics of plume plasma and its effects on ablation depth during ultrashort laser ablation of copper in air

机译:空气中铜的超短激光烧蚀过程中烟羽等离子体的特性及其对烧蚀深度的影响

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摘要

The characteristics of plume plasma induced by ultrashort laser ablation of copper in air are studied experimentally and theoretically in this paper. The plasma front evolutions are captured using a high-speed intensified charge-coupled device camera, while the plasma temperature and electron number density evolutions are obtained from the plasma emission spectra measured by a high-precision spectrometer. For the theoretical study, a hybrid simulation model is proposed to combine an atomistic model for the early stage and a hydrodynamic model for the later stage. The simulation model is validated against the measurement results and shown to be capable of predicting plasma properties for a broader range of fluence, without being constrained by the signal strength as in the measurements. Both experimental and theoretical results show that the nonlinear relationship between plasma properties and laser fluence directly relates to the relationship between ablation depth and laser fluence. Therefore, the measurable and predictable plasma properties reveal the underlying ablation mechanism that has been studied primarily by theory.
机译:本文通过实验和理论研究了空气中铜超短激光烧蚀引起的羽流等离子体的特性。使用高速增强型电荷耦合器件照相机捕获等离子体前沿演变,而等离子体温度和电子数密度演变可通过高精度光谱仪测量的等离子体发射光谱获得。为了进行理论研究,提出了一种混合仿真模型,该模型将早期的原子模型与后期的流体力学模型相结合。针对测量结果对仿真模型进行了验证,结果表明该仿真模型能够在更大的注量范围内预测等离子体特性,而不受测量中信号强度的限制。实验和理论结果均表明,等离子体性能与激光能量密度之间的非线性关系与烧蚀深度与激光能量密度之间的关系直接相关。因此,可测量和可预测的血浆性质揭示了主要通过理论研究的潜在消融机制。

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