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Efficient laser-driven proton acceleration from cylindrical and planar cryogenic hydrogen jets

机译:圆柱和平面低温氢射流的高效激光驱动质子加速

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摘要

We report on recent experimental results deploying a continuous cryogenic hydrogen jet as a debris-free, renewable laser-driven source of pure proton beams generated at the 150 TW ultrashort pulse laser Draco. Efficient proton acceleration reaching cut-off energies of up to 20 MeV with particle numbers exceeding 109 particles per MeV per steradian is demonstrated, showing for the first time that the acceleration performance is comparable to solid foil targets with thicknesses in the micrometer range. Two different target geometries are presented and their proton beam deliverance characterized: cylindrical (∅ 5 μm) and planar (20 μm × 2 μm). In both cases typical Target Normal Sheath Acceleration emission patterns with exponential proton energy spectra are detected. Significantly higher proton numbers in laser-forward direction are observed when deploying the planar jet as compared to the cylindrical jet case. This is confirmed by two-dimensional Particle-in-Cell (2D3V PIC) simulations, which demonstrate that the planar jet proves favorable as its geometry leads to more optimized acceleration conditions.
机译:我们报告了最近的实验结果,该实验使用连续低温氢射流作为无碎片,可再生激光驱动的150 ofTW超短脉冲激光Draco产生的纯质子束源。证明了有效的质子加速达到了截止能量高达20VMeV,每兆弧度每MeV的粒子数超过10 9 粒子,这首次证明了其加速性能可与固体箔靶相比。厚度在微米范围内。给出了两种不同的目标几何形状,并表征了它们的质子束传递:圆柱(∅5μm)和平面(20μm×2μm)。在这两种情况下,均检测到具有指数质子能谱的典型目标正常鞘层加速度发射模式。与圆柱状射流情况相比,在部署平面射流时,在激光前向方向上观察到明显更高的质子数。二维单元中粒子(2D3V PIC)仿真证实了这一点,该仿真表明平面射流被证明是有利的,因为其几何形状会导致更优化的加速条件。

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