Photonics Center, School of Physics, Nankai University, Tianjin, China.
Opt Lett. 2011 Mar 1;36(5):648-50. doi: 10.1364/OL.36.000648.
Using numerical simulation, we have studied in detail vacuum electron acceleration driven by two crossed Airy beams with identical characteristics except for opposite accelerating directions. An electron injected along the longitudinal central axis is only affected by the combined longitudinal electric field. In addition, a suitable crossed Airy beams scheme is more beneficial to the energy gain of an electron than the single Airy beam acceleration scheme [Opt. Lett. 35, 3258 (2010)]. Meanwhile, the cross angle, the injection energy of the electron, and the initial phase of the Airy beams play significant roles in the energy gain of the electron.
利用数值模拟,我们详细研究了由两个具有相同特性但加速方向相反的交叉 Airy 光束驱动的真空电子加速。一个沿着纵向中心轴注入的电子仅受到组合纵向电场的影响。此外,与单 Airy 光束加速方案相比,合适的交叉 Airy 光束方案更有利于电子的能量增益[Opt. Lett. 35, 3258 (2010)]。同时,交叉角、电子的注入能量和 Airy 光束的初始相位对电子的能量增益起着重要作用。