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首页> 外文期刊>Physics of plasmas >Modeling ultrafast laser-driven ionization dynamics with Monte Carlo collisional particle-in-cell simulations
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Modeling ultrafast laser-driven ionization dynamics with Monte Carlo collisional particle-in-cell simulations

机译:使用蒙特卡洛碰撞粒子在细胞模拟对超快激光驱动的电离动力学建模

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摘要

Ionization dynamics of cold dense matter induced by ultrashort (<100 fs) laser pulses is studied for intensities at the onset of the relativistic regime by one-dimensional kinetic simulations. As a model we use a particle-in-cell code that includes field and electron collisional ionization, as well as elastic binary Coulomb collisions. As examples for the different ionization mechanisms, we give the spatial and temporal evolution of laser-induced ionization dynamics in helium gas and solid boron targets. Special attention is paid to the quasi-static electric fields at the rear surface of laser-irradiated targets that are important for laser-ion acceleration. (C) 2004 American Institute of Physics.
机译:通过一维动力学模拟研究了由超短(<100 fs)激光脉冲引起的冷致密物质的电离动力学,在相对论状态开始时的强度。作为模型,我们使用单元格内的粒子代码,其中包括场和电子碰撞电离以及弹性二进制库仑碰撞。作为不同电离机理的例子,我们给出了氦气和固体硼靶中激光诱导的电离动力学的时空演化。要特别注意激光辐照目标背面的准静态电场,这对于加速激光离子非常重要。 (C)2004年美国物理研究所。

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