螺旋脉冲的产生和随后的离子加速通过超薄箔和圆偏振激光脉冲

M. Matys, K. Mima, T. Jeong, O. Klimo, J. Psikal, S. V. Bulanov
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引用次数: 0

摘要

高强度pw级激光脉冲与超薄(数十nm)箔的相互作用为高辐射压力、强自生磁场和激光对生成孔径的衍射提供了有趣的研究条件。当激光脉冲通过这种介质传输时,可以增强其强度分布,包括产生陡升锋、局部强度增加和对比度提高。圆偏振激光脉冲的使用在这种设置中特别有趣,因为传输的激光脉冲可以获得螺旋状的强度空间分布。该结构也被转移到膨胀薄片的电子密度分布中。在这项工作中,我们比较了线偏振和圆偏振激光脉冲的情况下,借助三维粒子-细胞模拟在超薄箔(等离子体快门)和随后的离子加速度从下面的目标相互作用。等离子体百叶窗的加入使得在圆偏振的情况下产生螺旋状脉冲,在线偏振的情况下产生的离子束的散度显著降低,在这两种情况下离子的最大能量都增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spiral pulse generation and subsequent ion acceleration via ultra-thin foil and circularly polarized laser pulse
The interaction of high-intensity PW-class laser pulses with ultra-thin (tens of nm) foils provides interesting research conditions of high radiation pressure, strong self-generated magnetic fields and laser diffraction on generated aperture. When the laser pulse is transmitted through such a medium, its intensity profile can be enhanced, including generation of a steep-rising front, local intensity increase and improvement of its contrast. The use of a circularly polarized laser pulse is especially interesting in this setup, as the transmitted laser pulse can obtain a spiral-like intensity space profile. The structure is also transferred into the electron density profile of the expanded thin foil. In this work we compared the cases of linearly and circularly polarized laser pulse with the help of 3D particlein-cell simulations in interaction of an ultra-thin foil (plasma shutter) and the subsequent ion acceleration from the following target. The addition of the plasma shutter resulted in a generation of a spiral-like pulse in the case of circular polarization, significant reduction of the divergence of generated ion beam in the case of linear polarization and increase of maximal ion energy in both cases.
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