...
首页> 外文期刊>Laser and Particle Beams >Polarization effects in collisions between very intense laser beams and relativistic electrons
【24h】

Polarization effects in collisions between very intense laser beams and relativistic electrons

机译:极强激光束和相对论电子之间的碰撞中的极化效应

获取原文
获取原文并翻译 | 示例
           

摘要

The interaction between laser and relativistic electron beams is a promising source of very energetic X rays.We present an accurate model for the collisions between very intense linearly polarized laser beams, corresponding to relativistic parameters of the order of unity or greater, and electrons having energies up to 100 MeV.Our approach uses only one approximation, namely it neglects the radiative corrections.We consider the two cases in which the laser field polarization is either perpendicular or parallel to the plane defined by the directions of propagation of the laser beam and electron beam, and calculate accurately the properties of the σ and π polarized scattered beams.The angle between the directions of the laser and electron beams, denoted by θ L, is allowed to have arbitrary values, so that the widely analyzed 180° and 90° geometries, in which the two beams collide, respectively, head on and perpendicularly, are particular cases.We prove that the polarization properties of the scattered beam depend on the angle θ L.By varying this angle, the polarization of the scattered beam can be varied between the two limit configurations in which the electromagnetic field of the scattered beam is σ or π polarized with respect to the scattering plane.Our theoretical results are in good agreement with experimental results published in literature.Our model shows that current technologies can be used to produce hard harmonics of the scattered radiations.These harmonics can have relatively high intensities comparable to the intensities of the first harmonics, and energies higher than 1 MeV.Our results lead to the possibility to realize an adjustable photon source with both the energy and polarization of the scattered radiations accurately controlled by the value of the θ L angle.
机译:激光和相对论电子束之间的相互作用是很有希望的X射线源,我们提出了一个非常强的线偏振激光束与单位能量或更大数量级的相对论参数相对应的碰撞的精确模型,以及具有能量的电子高达100 MeV。我们的方法仅使用一个近似值,即忽略了辐射校正。我们考虑了两种情况,其中激光场极化垂直或平行于由激光束和电子的传播方向定义的平面可以准确地计算出σ和π偏振散射束的特性,允许将激光束和电子束方向之间的夹角(θL表示为任意值),从而广泛分析了180°和90°两个光束分别在正面和垂直方向碰撞的几何形状是特殊情况。散射光束取决于角度θL.通过改变该角度,可以在两个极限配置之间改变散射光束的极化,在两个极限配置中,散射光束的电磁场相对于散射平面为σ或π极化。我们的理论结果与文献中发表的实验结果非常吻合,我们的模型表明可以使用当前技术来产生散射辐射的硬谐波,这些谐波可以具有与一次谐波强度和能量相当的强度高于1 MeV。我们的结果导致有可能实现一种可调节的光子源,其散射辐射的能量和偏振均由θL角的值精确控制。

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