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首页> 外文期刊>Physical review letters >Radiation-Pressure Acceleration of Ion Beams from Nanofoil Targets: The Leaky Light-Sail Regime
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Radiation-Pressure Acceleration of Ion Beams from Nanofoil Targets: The Leaky Light-Sail Regime

机译:纳米箔靶的离子束辐射压力加速:漏风帆结构

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摘要

A new ion radiation-pressure acceleration regime, the "leaky light sail," is proposed which uses sub-skin-depth nanometer foils irradiated by circularly polarized laser pulses. In the regime, the foil is partially transparent, continuously leaking electrons out along with the transmitted laser field. This feature can be exploited by a multispecies nanofoil configuration to stabilize the acceleration of the light ion component, supplementing the latter with an excess of electrons leaked from those associated with the heavy ions to avoid Coulomb explosion. It is shown by 2D particle-in-cell simulations that a monoenergetic proton beam with energy 18 MeV is produced by circularly polarized lasers at intensities of just 10~(19) W/cm~2. 100 MeV proton beams are obtained by increasing the intensities to 2 × 10~(20) W/cm~2.
机译:提出了一种新的离子辐射压力加速机制“泄漏光帆”,该机制使用了圆偏振激光脉冲辐照的亚皮深纳米箔。在这种情况下,箔片是部分透明的,连续地将电子与透射的激光场一起泄漏出去。多物种纳米箔构型可利用此功能来稳定轻离子组分的加速度,并为轻离子组分补充过量的与重离子相关的电子泄漏的电子,以避免库仑爆炸。二维单元格模拟表明,圆偏振激光仅以10〜(19)W / cm〜2的强度产生能量为18 MeV的单能质子束。通过将强度增加到2×10〜(20)W / cm〜2,可以获得100 MeV质子束。

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