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Efficient forward direct laser acceleration of electrons in subcritical plasma with injection through hybrid parametric instability

机译:通过混合参数不稳定注入的亚临界等离子体中的高效前进激光加速度

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Efficient forward electron acceleration by the direct laser acceleration (DLA) in the plasma channel was experimentally demonstrated using a 16 μm thick tape target. An electron beam with ~0.05 rad divergence, 50-100 pC charge (for E>1.7 MeV), and temperature ~ several MeV was observed on 1 TW laser system utilizing an additional controlled nanosecond prepulse. Using this beam, several near-threshold photonuclear reactions were studied and neutron flux of ~ 10~5 - 10~6 s~(-1)J~(-1) was achieved. We also used neutron flux measurements to estimate electron beam charge, calculating conversion coefficients from GEANT4 simulations. Terahertz radiation emission from this type of interaction was also studied, exhibiting a two-maxima structure with the change of delay between main pulse and nanosecond prepulse.
机译:使用16μm厚的胶带靶进行实验证明了等离子体通道中直接激光加速度(DLA)的高效前进电子加速。 用〜0.05次偏差的电子束,50-100 pc充电(适用于E> 1.7 meV),并在1次激光系统上观察到温度〜几个MEV,利用额外的控制纳秒预浸。 使用该光束,研究了几种接近阈值的光子核反应,达到了〜10〜5-10〜6 s〜(-1)J〜(-1)的中子通量。 我们还使用中子磁通测量来估计电子束充电,从GEANT4仿真计算转换系数。 还研究了这种类型的相互作用的太赫兹辐射发射,具有两个最大的结构,随着主脉冲和纳秒散热之间的延迟而变化。

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