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Manipulation of the spatial distribution of laser-accelerated proton beams by varying the laser intensity distribution

机译:通过改变激光强度分布来控制激光加速质子束的空间分布

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We report on a study of the spatial profile of proton beams produced through target normal sheath acceleration using flat target foils and changing the laser intensity distribution on the target front surface. This is done by either defocusing a single laser pulse or by using a split-pulse setup and irradiating the target with two identical laser pulses with variable spatial separation. The resulting proton beam profile and the energy spectrum are recorded as functions of the focal spot size of the single laser pulse and of the separation between the two pulses. A shaping of the resulting proton beam profile, related to both an increase in flux of low-energy protons in the target normal direction and a decrease in their divergence, in one or two dimensions, is observed. The results are explained by simple modelling of rear surface sheath field expansion, ionization, and projection of the resulting proton beam. (C) 2016 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
机译:我们报告了一项研究,即使用平坦的目标箔并通过改变目标正面上的激光强度分布,通过目标正常鞘层加速度产生的质子束的空间轮廓。这可以通过散焦单个激光脉冲或使用分脉冲设置并用两个具有可变空间间隔的相同激光脉冲照射目标来完成。所记录的质子束轮廓和能谱是单个激光脉冲的焦斑大小以及两个脉冲之间的间距的函数。在一维或二维中,观察到了与低能量质子在目标法向方向上的通量的增加和其发散的减小有关的所得质子束轮廓的成形。通过对后表面鞘层场扩展,电离和所得质子束的投影进行简单建模来解释结果。 (C)2016作者。除另有说明外,所有文章内容均根据知识共享署名(CC BY)许可(http://creativecommons.org/licenses/by/4.0/)进行许可。

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