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Modeling of the electrostatic sheath shape on the rear target surface in short-pulse laser-driven proton acceleration

机译:短脉冲激光驱动质子加速中后靶面上静电鞘形状的建模

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摘要

Proton beams, generated in the interaction process Of Short Ultra-intense laser pulses with thin foils. carry imprints of ear side target structures. These intensity patterns, imaged with a particle detector. sometimes show slight deformations. We propose an analytical model to describe these deformations by the spatial shape of a monoenergetic layer of protons ill the beginning of free proton propagation. We also present results Of Simulations. which reproduce the detected structures and allow finally making quantitative conclusions on the shape of the layer. In experiments with electrically consucting targets, the shape is always close to a parabolic one independently on target thickness or laser parameters. Since the protons are, Pulled by the free electrons. there must be a strong correlation to the electron space charge distribution on the rear side of the illuminated foil. Simulations demonstrate that the deformations in the detected patterns of the proton layers are very sensitive to the initial layer shape. Analyzing spatial Structures of the generated proton beams we can indirectly conclude on electron transport phenomena in the overdense part of the target.
机译:在短超强激光脉冲与薄箔相互作用的过程中产生的质子束。带有耳侧目标结构的烙印。这些强度模式,用粒子探测器成像。有时会出现轻微变形。我们提出一个分析模型,通过质子的单能层在自由质子传播开始之前的空间形状来描述这些变形。我们还介绍了模拟结果。可以重现检测到的结构,并最终对层的形状做出定量结论。在具有电导性靶的实验中,形状始终独立于靶厚度或激光参数而接近抛物线。由于质子是,被自由电子所吸引。照明箔背面的电子空间电荷分布必须具有很强的相关性。仿真表明,质子层的检测图案中的变形对初始层形状非常敏感。分析产生的质子束的空间结构,我们可以间接得出关于靶的高密度部分中电子传输现象的结论。

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