期刊文献+

强激光锥型靶真空电子加速数值模拟研究 被引量:1

Numerical simulation of vacuum electron acceleration by interaction of intense laser with conical target
下载PDF
导出
摘要 真空激光加速机制具有加速场梯度大、加速电子电量高的优点,目前制约真空加速机制研究发展的主要问题是如何产生具有一定初速度的电子并将其注入加速场。提出了一种利用强激光与锥型靶相互作用产生高能电子并实现真空加速的新方法,利用二维PIC(Particle-in-cell)粒子模拟程序对这一方法进行了研究。模拟结果显示,对于光强为1021 W/cm2量级的高斯激光脉冲,产生了能量为GeV量级、发散角约为1°的强流快电子束。此外还通过理论解析和参数模拟研究了靶半径对这种超热电子加速机制的影响。 Vacuum laser acceleration (VLA) has the advantages of large gradient of acceleration field and large charge of collimated electrons. For certain topics, the production of electrons with initial velocity and the injection of these electrons in vac uum are main problems restricting the development of VLA. A new vacuum laser acceleration scheme is proposed in this paper, in which an ultra short ultra intense laser pulse is grazing incident into a cone target. Two- dimensional particle in-cell simulation is used to confirm this acceleration scheme, which can produce collimated GeV class electron beams in millimeters. The intense la ser pulse is a linearly y-polarized laser with intensity of 10^21 W/cm^2. The effect of radius of the target is studied in this paper.
作者 王思明 周维民 杨祖华 贺书凯 谷渝秋 曹磊峰 Wang Siming;Zhou Weimin;Yang Zuhua;He Shukai;Gu yuqiu;Cao Leifeng(Science and Technology on Plasma Laboratory,Research Center of Laser Fusion,CAEP,Mianyang 621900,China)
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2018年第9期17-20,共4页 High Power Laser and Particle Beams
基金 国家自然科学基金项目(11775202 11405141)
关键词 超短超强激光 锥型靶 PIC模拟 真空激光加速 ultra short ultra intense laser pulse conical target PIC simulation vacuum laser acceleration
  • 相关文献

参考文献2

二级参考文献20

  • 1[1]Perry M D, Mourou G. Terawat to petawatt subpicosecond lasers [J]. Science, 1994, 264: 917. 被引量:1
  • 2[2]Wilks S C, Langdon A B, Cowan T E, et al. Energetic proton generation in ultra-intense laser-solid interactions[J]. Phys Plasmas, 2001,8: 542. 被引量:1
  • 3[3]Clark E L, Krushelnick K, Davies J R, et al. Measurements of energetic proton transport through magnetized plasma from intense laser interaction with solids[J]. Phys Rev Lett, 2000, 84: 670. 被引量:1
  • 4[4]Snavely R A, Key M H, Hatchctt S P, et al. Intense high-energy proton beams from petawatt-laser irradiation of solids[J]. Phys Rev Lett,2000, 85: 2945. 被引量:1
  • 5[5]Macsimchuk A, Gu S, Flippo K, et al. Forward ion acceleration in thin films driven by a high-intensity laser[J]. Phys Rev Lett, 2000, 84:4108. 被引量:1
  • 6[6]Gitomer S, Jones R, Begay F, et al. Fast ions and hot electrons in the laser-plasma interaction[J]. Phys Fluids, 1986, 29 : 2679. 被引量:1
  • 7[8]Roth M, Cowan T E, Key M H, et al. Fast ignition by intense laser-accelerated proton beams[J]. Phys Rev Lett, 2001, 86: 436. 被引量:1
  • 8[9]Borghesi M, Schiavi A, Campbell D H. Proton imaging: a diagnostic for inertial confinement fusion/fast ignitor studies[J]. Plasma Phys Control Fusion, 2001, A43: 267. 被引量:1
  • 9[10]Fews A P. Flexible analysis of etched nuclear particle tracks[J]. Nucl Instrum Methods Phys Res, 1992, B72: 91. 被引量:1
  • 10[11]Sakabe S, Mochizuki T, Yamanaka T, et al. Modified Thomson parabola ion spectrometer of wide dynamic range[J]. Rev Sci Instrum,1980, 51: 1314. 被引量:1

共引文献15

同被引文献5

引证文献1

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部