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Investigations of ultrafast charge dynamics in laser-irradiated targets by a self probing technique employing laser driven protons

机译:通过使用激光驱动质子的自探测技术研究激光辐照靶中的超快电荷动力学

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摘要

The divergent and broadband proton beams produced by the target normal sheath acceleration mechanism provide the unique opportunity to probe, in a point-projection imaging scheme, the dynamics of the transient electric and magnetic fields produced during laser-plasma interactions. Commonly such experimental setup entails two intense laser beams, where the interaction produced by one beam is probed with the protons produced by the second. We present here experimental studies of the ultra-fast charge dynamics along a wire connected to laser irradiated target carried out by employing a ‘self’ proton probing arrangement – i.e. by connecting the wire to the target generating the probe protons. The experimental data shows that an electromagnetic pulse carrying a significant amount of charge is launched along the wire, which travels as a unified pulse of 10s of ps duration with a velocity close to speed of light. The experimental capabilities and the analysis procedure of this specific type of proton probing technique are discussed.
机译:目标法向鞘层加速机制产生的发散和宽带质子束提供了独特的机会,可以在点投影成像方案中探测在激光-等离子体相互作用期间产生的瞬态电场和磁场的动力学。通常,这种实验装置需要两束强激光束,其中一束产生的相互作用与第二束产生的质子一起探测。我们在此介绍通过采用“自”质子探测装置(即,将电线连接到生成探针质子的目标)进行的,沿着与激光辐照目标连接的电线的超快速电荷动力学的实验研究。实验数据表明,沿导线发射了带有大量电荷的电磁脉冲,该电磁脉冲以10 ps ps持续时间的统一脉冲传播,其速度接近光速。讨论了这种特殊类型的质子探测技术的实验能力和分析程序。

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