Kong Q, Miyazaki S, Kawata S, Miyauchi K, Sakai K, Ho Y K, Nakajima K, Miyanaga N, Limpouch J, Andreev A A
Department of Electrical and Electronic Engineering, Utsunomiya University, Yohtoh 7-1-2, Utsunomiya 321-8585, Japan.
Phys Rev E Stat Nonlin Soft Matter Phys. 2004 May;69(5 Pt 2):056502. doi: 10.1103/PhysRevE.69.056502. Epub 2004 May 13.
A focused short-pulse laser of TEM (1,0)+TEM (0,1) mode has two intensity peaks in the radial direction, so that the transverse ponderomotive force may trap electrons between the two peaks. At the same time the longitudinal ponderomotive force may accelerate electrons at the head of the laser pulse, when the laser is focused. When the electrons move to the laser tail, the laser may diverge and the electron deceleration becomes relatively weak. Our numerical analyses demonstrate that electrons are trapped well by the laser potential well, and that at the same time the acceleration by the longitudinal ponderomotive force induces the electron bunch compression. This trapping and compression mechanism is unique: the electron bunch can be compressed to the scale of the laser pulse length.
处于TEM(1,0)+TEM(0,1)模式的聚焦短脉冲激光在径向有两个强度峰值,使得横向有质动力可将电子捕获在两个峰值之间。同时,当激光聚焦时,纵向有质动力可加速激光脉冲头部的电子。当电子移动到激光尾部时,激光可能发散,电子减速变得相对较弱。我们的数值分析表明,电子被激光势阱很好地捕获,同时纵向有质动力引起的加速导致电子束团压缩。这种捕获和压缩机制是独特的:电子束团可被压缩到激光脉冲长度的尺度。