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强激光与双锥靶作用加速准单能质子束
引用本文:吴凤娟, 周维民, 单连强, 等. 强激光与双锥靶作用加速准单能质子束[J]. 强激光与粒子束, 2014, 26: 122001. doi: 10.11884/HPLPB201426.122001
作者姓名:吴凤娟  周维民  单连强  张智猛  吴春蓉  谷渝秋
作者单位:1.中国工程物理研究院 激光聚变研究中心, 等离子体物理重点实验室, 四川 绵阳 621 900;;;2.西南科技大学 国防科技学院, 四川 绵阳 621 01 0
基金项目:国家自然科学基金项目,西南科技大学博士基金项目
摘    要:提出了一种新型的双锥靶结构用于准单能质子束加速。利用二维PIC粒子模拟程序研究了强激光与双锥靶作用加速产生质子束的物理过程以及质子束品质。双锥靶产生的质子束在峰值能量和发散角度等方面都明显优于相同激光条件下单锥靶和平面靶的结果。尤其与平面靶相比,双锥靶质子束的峰值能量提高了5倍以上,而且很好地保持准单能性。一方面双锥靶的内锥部分是临界密度材料,提高了激光的吸收效率;另一方面双锥靶内形成了更强的准静态磁场,可以约束引导更多的超热电子传输过锥尖,进而增强加速质子束的鞘层电场。

关 键 词:强激光   双锥靶   PIC模拟   准静态磁场   准单能质子束
收稿时间:2014-07-21
修稿时间:2014-09-26

Quasimonoenergetic proton beam acceleration from intense laser interaction with a double cone target
Wu Fengjuan, Zhou Weimin, Shan Lianqiang, et al. Quasimonoenergetic proton beam acceleration from intense laser interaction with a double cone target[J]. High Power Laser and Particle Beams, 2014, 26: 122001. doi: 10.11884/HPLPB201426.122001
Authors:Wu Fengjuan  Zhou Weimin  Shan Lianqiang  Zhang Zhimeng  Wu Chunrong  Gu Yuqiu
Affiliation:1. Science and Technology on Plasma Physics Laboratory,Research Center of Laser Fusion,CAEP,Mianyang 621900,China;;;2. School of National Defense Science and Technology,Southwest University of Science and Technology,Mianyang 621010,China
Abstract:A new double cone target for accelerating quasimonoenergetic proton beam is proposed in this paper. Using two-dimensional PIC (particle-in-cell) simulation, the physical process of accelerating protons and the quality of proton beam from interaction of intense laser with the double cone target are investigated. In the case of same laser parameters, the peak energy and divergence angle of proton beams accelerated by the double cone target are superior to those by the single cone or planar target. Especially, compared to the planar target, the peak proton energy in the double cone target is increased by more than five times and quasimonoenergy can be well maintained. The critical density of the inner cone of the double cone target can increase the laser absorption efficiency. Moreover, the larger quasistatic magnetic field inside the double cone target can confine and guide more fast electrons to transport through the cone tip, which may enhance the sheath field for proton acceleration.
Keywords:intense laser  double cone target  PIC simulation  quasistatic magnetic field  quasimonoenergetic proton beam
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