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Time- and space-resolved X-ray absorption spectroscopy of aluminum irradiated by a subpicosecond high-power laser

机译:亚皮秒大功率激光辐照铝的时间和空间分辨X射线吸收光谱

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摘要

The ionization and recombination dynamics of transient aluminum plasmas was measured using point projection K-shell absorption spectroscopy. An aluminum plasma was produced with a subpicosecond beam of the 100-TW laser at the LULI facility and probed at different times with a picosecond X-ray backlighter created with a synchronized subpicosecond laser beam. Fourier-Domain-Interferometry (FDI) was used to measure the electron temperature at the peak of the heating laser pulse. Absorption X-ray spectra at early times are characteristic of a dense and rather homogeneous plasma, with limited longitudinal gradients as shown by hydrodynamic simulations. The shift of the Al K-edge was measured in the cold dense plasma located at the edge of the heated plasma. From the 1s-2p absorption spectra, the average ionization was measured as a function of time and was also modeled with a collisional-radiative atomic physics code coupled with hydrodynamic simulations. (C) 2005 Elsevier Ltd. All rights reserved.
机译:使用点投影K壳吸收光谱法测量了瞬态铝等离子体的电离和复合动力学。在LULI工厂使用100 TW激光的亚皮秒光束产生了铝等离子体,并在不同时间用同步亚皮秒激光束创建的皮秒X射线背光灯进行了探测。傅里叶域干涉法(FDI)用于测量加热激光脉冲峰值处的电子温度。流体动力学模拟显示,早期的X射线吸收光谱是密集且相当均匀的等离子体的特征,具有有限的纵向梯度。在位于加热等离子体边缘的冷致密等离子体中测量Al K边缘的移动。从1s-2p吸收光谱中,平均电离被测量为时间的函数,并且还通过碰撞辐射原子物理代码与流体动力学模拟一起进行建模。 (C)2005 Elsevier Ltd.保留所有权利。

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