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Enhancing laser beam performance by interfering intense laser beamlets

机译:通过干涉强激光束提高激光束性能

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摘要

Increasing the laser energy absorption into energetic particle beams represents a longstanding quest in intense laser-plasma physics. During the interaction with matter, part of the laser energy is converted into relativistic electron beams, which are the origin of secondary sources of energetic ions, γ-rays and neutrons. Here we experimentally demonstrate that using multiple coherent laser beamlets spatially and temporally overlapped, thus producing an interference pattern in the laser focus, significantly improves the laser energy conversion efficiency into hot electrons, compared to one beam with the same energy and nominal intensity as the four beamlets combined. Two-dimensional particle-in-cell simulations support the experimental results, suggesting that beamlet interference pattern induces a periodical shaping of the critical density, ultimately playing a key-role in enhancing the laser-to-electron energy conversion efficiency. This method is rather insensitive to laser pulse contrast and duration, making this approach robust and suitable to many existing facilities.
机译:在高能激光等离子体物理学中,将激光能量吸收增加到高能粒子束中代表了长期的追求。在与物质相互作用的过程中,部分激光能量转换为相对论电子束,这是高能离子,γ射线和中子的次级来源。在这里,我们通过实验证明,使用多个相干激光小束在空间和时间上重叠,从而在激光焦点上产生干涉图样,与具有相同能量和标称强度的四束光束相比,显着提高了将激光能量转换为热电子的效率。小波束合并。二维单元格内粒子模拟支持实验结果,表明子束干涉图样会引起临界密度的周期性变化,最终在提高激光到电子能量转换效率方面起到关键作用。这种方法对激光脉冲的对比度和持续时间相当不敏感,从而使该方法变得健壮并适用于许多现有设施。

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