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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Effect of pulse duration on the x-ray emission from Ar clusters in intense laser fields
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Effect of pulse duration on the x-ray emission from Ar clusters in intense laser fields

机译:脉冲持续时间对强激光场中Ar团簇X射线发射的影响

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We study experimentally and theoretically the production of characteristic K alpha x-rays during the interaction of intense infrared laser pulse with large (N similar to 10(4)-10(6) atoms) argon clusters. We focus on the influence of laser intensity and pulse length on both the total x-ray yields and the charge-state distributions of the emitting cluster argon ions. An experimental optimization of the x-ray yield based on the setup geometry is presented and the role of the effective focal volume is investigated. Our theoretical model is based on a mean-field Monte-Carlo simulation and allows identifying the effective heating of a subensemble of electrons in strong fields as the origin of the observed x-ray emission. Well-controlled experimental conditions allow a quantitative bench marking of absolute x-ray yields as well as charge state distributions of ions having a K-shell vacancy. The presence of an optimum pulse duration that maximizes the x-ray yield at constant laser energy is found to be the result of the competition between the single cluster dynamics and the number of clusters participating in the emission.
机译:我们从实验和理论上研究强红外激光脉冲与大(N类似于10(4)-10(6)原子)氩团簇相互作用期间特征Kαx射线的产生。我们专注于激光强度和脉冲长度对总X射线产量和发射簇氩离子的电荷态分布的影响。提出了基于设置几何形状的X射线产量的实验优化,并研究了有效焦距的作用。我们的理论模型基于平均场蒙特卡洛模拟,可以识别强电场中电子亚群的有效加热,作为观察到的X射线发射的起点。良好控制的实验条件允许对绝对X射线产率以及具有K壳空位的离子的电荷状态分布进行定量的基准标记。发现在恒定激光能量下能最大化X射线产量的最佳脉冲持续时间是单个簇动力学与参与发射的簇数之间竞争的结果。

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