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Ion acceleration with ultrafast laser driven water droplets

机译:超快激光驱动的水滴加速离子

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Small water droplets (20 micron in diameter) have been exposed to intense (similar to 10(19) W/cm(2)) laser pulses in order to study ultrashort (similar to 35 fs) laser pulse driven ion acceleration. Ion emission spectra registered simultaneously in forward and backward direction in respect to the incident laser beam carry similar integral ion energy but show different ion cutoff energies. With simple model estimations on basis of the confined and spherical geometry of the droplet-target, we inferred acceleration field strengths of about (0.7-2) MV/mu m. Up to 9% of the incident laser energy is converted to kinetic energy of ions, which have been accelerated to energies above 100 keV and up to 1.5 MeV. A laser pedestal at an intensity of about 10(-7) of the peak intensity at 1-2 ns in front of the pulse peak still limits the achievable cutoff energies of emitted protons from the droplet. The observed increase of cutoff energies with an enhanced temporal contrast of the laser pulse is elucidated within a simple acceleration model.
机译:小水滴(直径为20微米)已暴露于强烈的(类似于10(19)W / cm(2))激光脉冲,以便研究超短(类似于35 fs)的激光脉冲驱动的离子加速。相对于入射激光束同时在正向和反向方向上记录的离子发射光谱具有相似的积分离子能量,但显示出不同的离子截止能量。通过基于液滴目标的受限和球形几何结构的简单模型估算,我们得出的加速场强度约为(0.7-2)MV /μm。高达9%的入射激光能量被转换为离子的动能,离子的动能已被加速到100 keV以上和1.5 MeV以上的能量。在脉冲峰前面1-2 ns处强度约为峰强度的10(-7)的激光基座仍然限制了从液滴发射的质子可实现的截止能量。在简单的加速模型中阐明了所观察到的截止能量的增加以及激光脉冲的时间对比度的增强。

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