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Proton acceleration by collisionless shocks using a supersonic H-2 gas-jet target and high-power infrared laser pulses

机译:使用超声波H-2气动喷射目标和高功率红外激光脉冲的质子加速度通过碰撞冲击

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摘要

For most laser-driven ion acceleration applications, a well-characterized intense ion beam with a low divergence and a controllable energy spectrum produced at a high repetition rate is needed. Gas-jet targets have given promising results in simulations, and they have several technical advantages for high-repetition-rate lasers. In this work, we report on proton acceleration to energies up to 6 MeV using a supersonic H-2 gas-jet target at the LULI PICO2000 laser facility. The experimental results are compared with the plasma hydrodynamics and the particle-in-cell simulations to identify the acceleration mechanisms at play.
机译:对于大多数激光驱动的离子加速度应用,需要具有低发散和以高重复率产生的可控能量光谱的良好表征强的离子束。 气动喷射目标在仿真中具有有希望的结果,它们对高重复率激光器具有几个技术优势。 在这项工作中,我们在Luli Pico2000激光设施的超声波H-2气动喷射目标上报告质子加速度至6MeV。 将实验结果与等离子体流体动力学和粒子内模拟进行比较,以识别游戏中的加速机制。

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