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首页> 外文期刊>Physics of plasmas >Laser beam-profile impression and target thickness impact n laser-accelerated protons
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Laser beam-profile impression and target thickness impact n laser-accelerated protons

机译:激光束轮廓印象和目标厚度对n个激光加速质子的影响

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摘要

Experimental results on the influence of the laser focal spot shape onto the beam profile of laser-accelerated protons from gold foils are reported. The targets' microgrooved rear side, together with a stack of radiochromic films, allowed us to deduce the energy-dependent proton source-shape and size, respectively. The experiments show, that shape and size of the proton source depend only weakly on target thickness as well as shape of the laser focus, although they strongly influence the proton's intensity distribution. It was shown that the laser creates an electron beam that closely follows the laser beam topology, which is maintained during the propagation through the target. Protons are then accelerated from the rear side with an electron created electric field of a similar shape. Simulations with the Sheath-Accelerated Beam Ray-tracing for IoN Analysis code SABRINA, which calculates the proton distribution in the detector for a given laser-beam profile, show that the electron distribution during the transport through a thick target (50 μm Au) is only modified due to multiple small angle scattering. Thin targets (10 μm) show large source sizes of over 100μm diameter for 5 MeV protons, which cannot be explained by multiple scattering only and are most likely the result of refluxing electrons.
机译:报道了关于激光焦点形状对金箔激光加速质子束轮廓影响的实验结果。靶子的背面有微槽,再加上一堆放射致变色膜,使我们可以分别推导与能量有关的质子源的形状和大小。实验表明,尽管质子源的形状和大小强烈影响质子的强度分布,但它们仅弱依赖于目标厚度以及激光焦点的形状。结果表明,激光产生的电子束紧随激光束拓扑结构,并在通过目标的传播过程中得以保持。然后,质子在电子形成的相似形状电场的作用下从背面加速。使用鞘层加速束射线追踪进行IoN分析代码SABRINA的仿真,该代码计算给定激光束轮廓时检测器中的质子分布,结果表明,在通过厚靶材(50μmAu)传输过程中,电子分布为仅由于多个小角度散射而修改。薄靶(10μm)显示5 MeV质子的直径大于100μm的大型源,这不能仅通过多次散射来解释,而很可能是电子回流的结果。

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