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Localization of ionization-induced trapping in a laser wakefield accelerator using a density down-ramp

机译:使用密度下降斜坡在激光尾波加速器中电离诱导的陷阱的定位

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We report on a study on controlled trapping of electrons, by field ionization of nitrogen ions, in laser wakefield accelerators in variable length gas cells. In addition to ionization-induced trapping in the density plateau inside the cells, which results in wide, but stable, electron energy spectra, a regime of ionization-induced trapping localized in the density down-ramp at the exit of the gas cells, is found. The resulting electron energy spectra are peaked, with 10% shot-to-shot fluctuations in peak energy. Ionization-induced trapping of electrons in the density down-ramp is a way to trap and accelerate a large number of electrons, thus improving the efficiency of the laser-driven wakefield acceleration.
机译:我们报告了在可变长度气室中的激光尾波加速器中通过氮离子的场电离来控制电子的捕获的研究。除了在细胞内部密度平台中发生电离诱导的俘获(这会导致宽而稳定的电子能谱)外,还存在一种在气体细胞出口处的密度下降沿中局限的电离诱导的俘获机制。找到了。产生的电子能谱达到峰值,峰值能量的逐次波动幅度为10%。电离诱导的电子在密度下降斜坡中的俘获是一种俘获和加速大量电子的方法,从而提高了激光驱动的尾场加速的效率。

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