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Longitudinal gas-density profilometry for plasma-wakefield acceleration targets

机译:等离子体尾波加速目标的纵向气体密度轮廓仪

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Precise tailoring of plasma-density profiles has been identified as one of the critical points in achieving stable and reproducible conditions in plasma wakefield accelerators. Here, the strict requirements of next generation plasma-wakefield concepts, such as hybrid-accelerators, with densities around 10~(17)cm~(-3) pose challenges to target fabrication as well as to their reliable diagnosis. To mitigate these issues we combine target simulation with fabrication and characterization. The resulting density profiles in capillaries with gas jet and multiple in- and outlets are simulated with the fluid code OpenFOAM. Satisfactory simulation results then are followed by fabrication of the desired target shapes with structures down to the 10 μm level. The detection of Raman scattered photons using lenses with large collection solid angle allows to measure the corresponding longitudinal density profiles at different number densities and allows a detection sensitivity down to the low 1017 cm"3 density range at high spatial resolution. This offers the possibility to gain insight into steep density gradients as for example in gas jets and at the plasma-to-vacuum transition.
机译:等离子体密度分布图的精确调整已被确定为在等离子体尾波加速器中实现稳定和可再现条件的关键点之一。在这里,密度为10〜(17)cm〜(-3)的下一代等离子流场概念(例如混合加速器)的严格要求对目标制造及其可靠诊断提出了挑战。为了减轻这些问题,我们将目标仿真与制造和表征相结合。使用流体代码OpenFOAM模拟在带有气体喷射器和多个进出气口的毛细管中得到的密度分布。令人满意的仿真结果之后,接着制造出具有低至10μm水平的结构的所需目标形状。使用具有大收集立体角的透镜检测拉曼散射光子,可以在不同的数密度下测量相应的纵向密度分布,并可以在高空间分辨率下将检测灵敏度降低到低1017 cm“ 3的密度范围。深入了解陡峭的密度梯度,例如在气体喷射器中以及在等离子体到真空的跃迁中。

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