He Feng, Yu Wei, Lu Peixiang, Xu Han, Qian Liejia, Shen Baifei, Yuan Xiao, Li Ruxin, Xu Zhizhan
Shanghai Institute of Optics and Fine Mechanics, Shanghai 201800, People's Republic of China.
Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Oct;68(4 Pt 2):046407. doi: 10.1103/PhysRevE.68.046407. Epub 2003 Oct 28.
Ponderomotive force driven acceleration of an electron at the focus of a high-intensity short-pulse laser is considered. Accounting for the asymmetry of acceleration and deceleration due to the evolution of the Gaussian laser beam waist, the energized electron is extracted from the laser pulse by the longitudinal ponderomotive force. It is shown that an electron's energy gain in the range of MeV can be realized for laser intensities above 10(19) W microm(2)/cm(2). Final energy gain as a function of the scattering angle and the electron's initial position has also been discussed.
考虑了在高强度短脉冲激光焦点处由有质动力驱动的电子加速。由于高斯激光束腰的演化导致加速和减速的不对称性,通过纵向有质动力将被加速的电子从激光脉冲中提取出来。结果表明,对于强度高于10(19) W·μm(2)/cm(2)的激光,电子可以实现MeV量级的能量增益。还讨论了最终能量增益作为散射角和电子初始位置的函数。