论文标题

高电流良好的超级通用电动电子的光束,用于激光驱动的核物理应用

High current well-directed beams of super-ponderomotive electrons for laser driven nuclear physics applications

论文作者

Rosmej, O. N., Gyrdymov, M., Günther, M. M., Andreev, N. E., Tavana, P., Neumayer, P., Zähter, S., Zahn, N., Popov, V. S., Borisenko, N. G., Kantsyrev, A., Skobliakov, A., Panyushkin, V., Bogdanov, A., Consoli, F., Shen, X. F., Pukhov, A.

论文摘要

我们在中等相对论激光强度及其应用中报告了激光驱动的增强电子束生成的新发现。在我们的实验中,强烈的亚皮秒激光脉冲通过电子密度(NCD)的血浆(NCD)和直接激光加速(DLA)传播。由于应用了低密度的聚合物泡沫,因此对高电流相对论电子束的突破变得可能是可能的。在泡沫中,NCD - 血压是通过超声电离机理产生的。与传统箔的激光照射产生的NCD浮肌相比,泡沫中的DLA加速度路径得到了强烈增强。测量结果导致有效电子温度的11÷13 MeV,并在激光脉冲传播方向上测得的电子能量的最大值最高为100 meV。电子能量的生长伴随着超高原理电子的数量的强烈增加,电子束的定义明确的方向性在散发锥中以12°角传播。对于与伽马驱动的核反应相关的7.5 MeV的能量范围,我们估计这些良好指导的电子束高达50 NC的电荷,以及激光能量转化率相应的效率为6%。将在1019 WCM-2激光强度下由DLA机制产生的电子光谱与以1021 WCM-2 1021 WCM-2的超相关激光强度在传统的金属箔中测量的NCD-PLASMA激光强度与在传统金属箔中测量的电子光谱进行了比较。在最后一个情况下,登记了较低的有效电子温度和较低的电子能量的两倍。这两种情况的电子光谱的实质差异在同位素产量中表现出来。

We report on new findings in a laser driven enhanced electron beam generation in the multi MeV energy range at moderate relativistic laser intensities and their applications. In our experiment, an intense sub-picosecond laser pulse propagates through a plasma of a near critical electron density (NCD) and direct laser acceleration (DLA) of electrons takes place. The breakthrough toward high current relativistic electron beams became possible due to application of low density polymer foams of sub-mm thickness. In foams, the NCD-plasma was produced by a mechanism of super-sonic ionization. Compared to NCD-plasmas generated by laser irradiation of conventional foils, the DLA acceleration path in foams was strongly enhanced. Measurements resulted into 11÷13 MeV of the effective electron temperature and up to 100 MeV maximum of the electron energy measured in the laser pulse propagation direction. The growth of the electron energy was accompanied by a strong increase of the number of super-ponderomotive electrons and a well-defined directionality of the electron beam that propagates in a divergence cone with a half angle of 12°. For the energy range above 7.5 MeV that is relevant for gamma-driven nuclear reactions, we estimate a charge carried by these well-directed electron beams as high as 50 nC and a corresponding efficiency of the laser energy conversion into electrons of 6%. The electron spectra generated by the DLA-mechanism in NCD-plasma at 1019 Wcm-2 laser intensity were compared with those measured in shots onto conventional metallic foils at ultra-relativistic laser intensities of 1021 Wcm-2 . In the last case, the twice lower effective electron temperature and the twice lower maximum of the electron energy were registered. The substantial difference in the electron spectra for these two cases presented itself in the isotope production yield.

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