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首页> 外文期刊>Physics of plasmas >Quasi-monoenergetic ion generation by hole-boring radiation pressure acceleration in inhomogeneous plasmas using tailored laser pulses
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Quasi-monoenergetic ion generation by hole-boring radiation pressure acceleration in inhomogeneous plasmas using tailored laser pulses

机译:使用定制的激光脉冲通过在非均质等离子体中钻孔辐射压力加速产生准单能离子

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摘要

It is proposed that laser hole-boring at a steady speed in inhomogeneous overdense plasma can be realized by the use of temporally tailored intense laser pulses, producing high-fluence quasi-monoenergetic ion beams. A general temporal profile of such laser pulses is formulated for arbitrary plasma density distribution. As an example, for a precompressed deuterium-tritium fusion target with an exponentially increasing density profile, its matched laser profile for steady hole-boring is given theoretically and verified numerically by particle-in-cell simulations. Furthermore, we propose to achieve fast ignition by the in-situ hole-boring accelerated ions using a tailored laser pulse. Simulations show that the effective energy fluence, conversion efficiency, energy spread, and collimation of the resulting ion beam can be significantly improved as compared to those found with un-tailored laser profiles. For the fusion fuel with an areal density of 1.5 g cm~(–2), simulation indicates that it is promising to realize fast ion ignition by using a tailored driver pulse with energy about 65 kJ.
机译:提出可以通过使用时间上定制的强激光脉冲来实现在不均匀的超密等离子体中以稳定的速度进行激光钻孔,从而产生高通量的准单能离子束。对于任意的等离子体密度分布,制定了这种激光脉冲的一般时间分布。例如,对于密度呈指数增长的预压缩氘-聚变靶,理论上给出了其用于稳定钻孔的匹配激光分布,并通过粒子模拟进行了数值验证。此外,我们建议使用定制的激光脉冲通过原位钻孔加速离子实现快速点火。仿真表明,与未定制激光轮廓相比,可以显着改善所得离子束的有效能量通量,转换效率,能量扩散和准直。对于面密度为1.5 g cm〜(-2)的聚变燃料,仿真表明,通过使用能量约为65 kJ的定制驱动脉冲,有望实现快速离子点火。

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