Feister Scott, Austin Drake R, Morrison John T, Frische Kyle D, Orban Chris, Ngirmang Gregory, Handler Abraham, Smith Joseph R H, Schillaci Mark, LaVerne Jay A, Chowdhury Enam A, Freeman R R, Roquemore W M
Opt Express. 2017 Aug 7;25(16):18736-18750. doi: 10.1364/OE.25.018736.
We report observation of kHz-pulsed-laser-accelerated electron energies up to 3 MeV in the -klaser (backward) direction from a 3 mJ laser interacting at normal incidence with a solid density, flowing-liquid target. The electrons/MeV/s.r. >1 MeV recorded here using a mJ-class laser exceeds or equals that of prior super-ponderomotive electron studies employing lasers at lower repetition-rates and oblique incidence. Focal intensity of the 40-fs-duration laser is 1.5 · 10 W cm, corresponding to only ∼80 keV electron ponderomotive energy. Varying laser intensity confirms electron energies in the laser-reflection direction well above what might be expected from ponderomotive scaling in normal-incidence laser-target geometry. This direct, normal-incidence energy spectrum measurement is made possible by modifying the final focusing off-axis-paraboloid (OAP) mirror with a central hole that allows electrons to pass, and restoring laser intensity through adaptive optics. A Lanex-based, optics-free high-acquisition rate (>100 Hz) magnetic electron-spectrometer was developed for this study to enable shot-to-shot statistical analysis and real-time feedback, which was leveraged in finding optimal pre-plasma conditions. 3D Particle-in-cell simulations of the interaction show qualitative super-ponderomotive spectral agreement with experiment. The demonstration of a high-repetition-rate, high-flux source containing >MeV electrons from a few-mJ, 40 fs laser and a simple liquid target encourages development of future ≥kHz-repetition, fs-duration electron-beam applications.
我们报告了在3 mJ激光与固体密度的流动液体靶垂直入射相互作用时,在-k激光(反向)方向上观察到高达3 MeV的kHz脉冲激光加速电子能量。此处使用mJ级激光记录的电子/MeV/s.r.>1 MeV超过或等于先前使用较低重复率和斜入射激光的超有质动力电子研究的结果。40 fs持续时间激光的聚焦强度为1.5·10 W/cm,仅对应约80 keV的电子有质动力能量。改变激光强度证实了在激光反射方向上的电子能量远高于垂直入射激光 - 靶几何结构中有质动力标度所预期的能量。通过用允许电子通过的中心孔修改最终聚焦离轴抛物面(OAP)镜,并通过自适应光学恢复激光强度,实现了这种直接的垂直入射能谱测量。为该研究开发了一种基于Lanex的无光学元件高采集率(>100 Hz)磁电子能谱仪,以实现逐次统计分析和实时反馈,这在寻找最佳预等离子体条件时得到了利用。相互作用的3D粒子模拟显示与实验在定性上有超有质动力光谱一致性。从几mJ、40 fs激光和简单液体靶中产生包含>MeV电子的高重复率、高通量源的演示,鼓励了未来≥kHz重复率、fs持续时间电子束应用的发展。