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Generation of Compressed GeV-Electron Bunch by Intense Short Pulse Laser

机译:强短脉冲激光产生压缩的GeV电子束

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Summary form only given. A purpose of this study is the generation of a high energy density and short size electron bunch by a focused intense short pulse laser of a TEM(1,0)+TEM(0,1) mode in vacuum. In our previous research, we presented that the TEM(1,0)+TEM(0,1) mode laser has a potential well in transverse and suppresses a transverse electron divergence by the transverse ponderomotive force. Therefore a low emittance electron bunch is produced near the laser axis after the interaction between the laser and the electrons. In this paper, we clarify the detail of the acceleration mechanism of the electrons and also present the electron bunch compression effect in our acceleration mechanism. The acceleration of the electron bunch confined comes from not the longitudinal ponderomotive force but the longitudinal electric field. In the case of the focused TEM(1,0)+TEM(0,1) mode laser, the longitudinal electric field has the maximum at the central axis. Consequently the electrons confined are mainly accelerated and compressed by the longitudinal electric field in the longitudinal direction. In our 3-dimensional particle simulations, the electrons are accelerated to the order of 0.5 GeV, and the normalized rms emittance is about 10-6 pimrad at the following parameter values: a0 = 10 (here, a0 is the dimensionless parameter of the laser intensity), the wavelength of lambda = 0.8 mum, the pulse length of 5lambda, the minimal spot size of 20lambda, and the initial energy of the electrons is 3.62 MeV. The electron bunch accelerated and confined is also compressed to the order of a few femtoseconds in the longitudinal direction. In this paper, we also found a scaling law for the maximum electron energy. Both the simulation and analytical estimation results show that the maximum electron energy is proportional to a0 in a relativistic region
机译:仅提供摘要表格。这项研究的目的是通过在真空中以TEM(1,0)+ TEM(0,1)模式聚焦的强短脉冲激光产生高能量密度和短尺寸的电子束。在我们以前的研究中,我们提出了TEM(1,0)+ TEM(0,1)模式激光在横向具有良好的势能,并通过横向致动力抑制了横向电子发散。因此,在激光与电子之间的相互作用之后,在激光轴附近产生了低发射电子束。在本文中,我们阐明了电子加速机制的细节,并在我们的加速机制中给出了电子束压缩效应。被束缚的电子束的加速度不是来自纵向的质动力,而是来自纵向的电场。在聚焦TEM(1,0)+ TEM(0,1)模式激光器的情况下,纵向电场在中心轴处具有最大值。因此,被限制的电子主要被纵向电场在纵向方向上加速和压缩。在我们的三维粒子模拟中,电子被加速到0.5 GeV的量级,并且在以下参数值下,归一化rms发射率约为10 -6 pimrad:a 0 = 10(这里, 0 是激光强度的无量纲参数),λ的波长= 0.8微米,脉冲长度为5lambda,最小光斑尺寸为20lambda以及初始电子的能量为3.62 MeV。被加速和约束的电子束在纵向上也被压缩到几飞秒的数量级。在本文中,我们还找到了最大电子能量的缩放定律。仿真和分析估计结果均表明,相对论区域中最大电子能量与a 0 成正比

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