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Laser-induced plasma in aqueous media: numerical simulation and experimental validation of spatial and temporal profiles

机译:水性介质中激光诱导的等离子体:时空分布的数值模拟和实验验证

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A numerical study of spatial and temporal distribution of a Gaussian-pulsed laser-induced plasma in distilled water is conducted in order to understand the resulting electron density distribution within the plasma plume. The primary motivation behind this study is the recent impetus on laser-induced plasma in the field of microfabrication, where prediction of geometric feature information is paramount to understanding material removal and overall process performance. This simulation predicts the distribution of plasma energy density, absorption coefficient, and laser intensity within the focal region by using a 3D axisymmetric model. The model can be adapted to other nonaqueous condensed media and different laser wavelengths and pulse widths. This numerical model was experimentally validated by an ultrafast gated camera and an external power meter by measuring the plasma energy and residual intensity, respectively. The model and the experimental data show similar qualitative trends in plasma energy density as the beam power is increased. Also the residual intensity data obtained from the model is within 10% of the experimental data for near-threshold intensities and within 40% for super-threshold intensities. The outcomes of this model can be further used as an input for a hydrodynamic model to predict the behavior of the condensed medium or for a thermomechanical model to predict material removal characteristics of the plasma. (C) 2014 Optical Society of America
机译:对高斯脉冲激光诱导的等离子体在蒸馏水中的时空分布进行了数值研究,以了解在等离子体羽流中产生的电子密度分布。这项研究背后的主要动机是最近在微型制造领域推动激光诱导等离子体的发展,其中几何特征信息的预测对于理解材料去除和整体工艺性能至关重要。该模拟通过使用3D轴对称模型预测了焦点区域内的等离子体能量密度,吸收系数和激光强度的分布。该模型可以适用于其他非水冷凝介质以及不同的激光波长和脉冲宽度。该数值模型通过分别测量等离子体能量和残余强度的超快门控相机和外部功率计进行了实验验证。该模型和实验数据表明,随着束功率的增加,等离子体能量密度的定性趋势相似。另外,从模型获得的残余强度数据在接近阈值强度的实验数据的10%以内,对于超阈值强度的实验数据在40%以内。该模型的结果可以进一步用作流体力学模型的输入,以预测冷凝介质的行为,或热力学模型的输入,以预测等离子体的材料去除特性。 (C)2014年美国眼镜学会

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