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首页> 外文期刊>New journal of physics >Generation of quasi-monoenergetic heavy ion beams via staged shock wave acceleration driven by intense laser pulses in near-critical plasmas
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Generation of quasi-monoenergetic heavy ion beams via staged shock wave acceleration driven by intense laser pulses in near-critical plasmas

机译:在近临界等离子体中由强激光脉冲驱动的分段冲击波加速产生准单能重离子束

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摘要

Laser-driven ion acceleration potentially offers a compact, cost-effective alternative to conventional accelerators for scientific, technological, and health-care applications. A novel scheme for heavy ion acceleration in near-critical plasmas via staged shock waves driven by intense laser pulses is proposed, where, in front of the heavy ion target, a light ion layer is used for launching a high-speed electrostatic shock wave. This shock is enhanced at the interface before it is transmitted into the heavy ion plasmas. Monoenergetic heavy ion beam with much higher energy can be generated by the transmitted shock, comparing to the shock wave acceleration in pure heavy ion target. Two-dimensional particle-in-cell simulations show that quasi-monoenergetic ion beams with peak energy 168 MeV and considerable particle number are obtained by laser pulses at intensity of in such staged shock wave acceleration scheme. Similarly a high-quality ion beam with a well-defined peak with energy 250 MeV and spread can also be obtained in this scheme.
机译:激光驱动的离子加速技术有可能为科学,技术和医疗保健领域的常规加速器提供紧凑,经济的替代方案。提出了一种新的方案,该方案通过强激光脉冲驱动的分段冲击波在近临界等离子体中加速重离子,其中在重离子靶之前,使用轻离子层发射高速静电冲击波。在将冲击传递到重离子等离子体之前,该冲击在界面处得到增强。与纯重离子靶的冲击波加速度相比,透射的激波可以产生能量更高的单能重离子束。二维单元格粒子模拟显示,在这种阶段性的冲击波加速方案中,通过激光脉冲以的强度获得了峰值能量为168 MeV且具有相当数量粒子数的准单能离子束。类似地,在该方案中,也可以获得具有明确定义的,能量为250 MeV且扩散的峰的高质量离子束。

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