Cao Y, Hu L X, Hu Y T, Zhao J, Zou D B, Yang X H, Zhang F P, Shao F Q, Yu T P
Opt Express. 2021 Sep 13;29(19):30223-30236. doi: 10.1364/OE.437827.
High-quality ultrashort electron beams have diverse applications in a variety of areas, such as 4D electron diffraction and microscopy, relativistic electron mirrors and ultrashort radiation sources. Direct laser acceleration (DLA) mechanism can produce electron beams with a large amount of charge (several to hundreds of nC), but the generated electron beams usually have large divergence and wide energy spread. Here, we propose a novel DLA scheme to generate high-quality ultrashort electron beams by irradiating a radially polarized laser pulse on a nanofiber. Since electrons are continuously squeezed transversely by the inward radial electric field force, the divergence angle gradually decreases as electrons transport stably with the laser pulse. The well-collimated electron bunches are effectively accelerated by the circularly-symmetric longitudinal electric field and the relative energy spread also gradually decreases. It is demonstrated by three-dimensional (3D) simulations that collimated monoenergetic electron bunches with 0.75° center divergence angle and 14% energy spread can be generated. An analytical model of electron acceleration is presented which interprets well by the 3D simulation results.
高质量的超短电子束在诸如四维电子衍射与显微镜、相对论电子镜和超短辐射源等众多领域有着广泛应用。直接激光加速(DLA)机制能够产生具有大量电荷(几到数百纳库)的电子束,但所产生的电子束通常具有较大的发散角和较宽的能量展宽。在此,我们提出一种新颖的DLA方案,通过在纳米纤维上照射径向偏振激光脉冲来产生高质量的超短电子束。由于电子受到向内的径向电场力持续横向挤压,随着电子与激光脉冲稳定传输,发散角逐渐减小。准直良好的电子束团被圆对称纵向电场有效加速,相对能量展宽也逐渐减小。三维(3D)模拟表明,可以产生中心发散角为0.75°且能量展宽为14%的准直单能电子束团。提出了一个电子加速的解析模型,该模型与3D模拟结果吻合良好。