...
首页> 外文期刊>Matter and Radiation at Extremes >Highly-collimated, high-charge and broadband MeV electron beams produced by magnetizing solids irradiated by high-intensity lasers
【24h】

Highly-collimated, high-charge and broadband MeV electron beams produced by magnetizing solids irradiated by high-intensity lasers

机译:通过高强度激光照射的固体磁化产生的高准直,高电荷和宽带MeV电子束

获取原文

摘要

Laser irradiation of solid targets can drive short and high-charge relativistic electron bunches over micron-scale acceleration gradients. However, for a long time, this technique was not considered a viable means of electron acceleration due to the large intrinsic divergence (~50° half-angle) of the electrons. Recently, a reduction in this divergence to 10°–20° half-angle has been obtained, using plasma-based magnetic fields or very high contrast laser pulses to extract the electrons into the vacuum. Here we show that we can further improve the electron beam collimation, down to ~1.5° half-angle, of a high-charge (6 nC) beam, and in a highly reproducible manner, while using standard stand-alone 100 TW-class laser pulses. This is obtained by embedding the laser-target interaction in an external, large-scale (cm), homogeneous, extremely stable, and high-strength (20 T) magnetic field that is independent of the laser. With upcoming multi-PW, high repetition-rate lasers, this technique opens the door to achieving even higher charges (>100 nC).
机译:固体目标的激光照射可以在微米级的加速度梯度上驱动短电荷和高电荷相对论电子束。但是,长期以来,由于电子的大内在发散度(约50°半角),该技术未被认为是可行的电子加速方法。最近,使用基于等离子体的磁场或非常高对比度的激光脉冲将电子提取到真空中,已将这种发散减小到10°–20°半角。在这里,我们表明,在使用标准的独立100 TW级电子束的情况下,我们可以以高度可重复的方式进一步改善高电荷(6 nC)束的电子束准直度,直至半角约1.5°。激光脉冲。这是通过将激光与目标的相互作用嵌入独立于激光器的外部,大型(cm),均匀,极其稳定且高强度(20 T)的磁场中而获得的。随着即将推出的多PW,高重复频率激光器,该技术为获得更高的电荷(> 100 nC)打开了大门。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号