论文标题
电子束的脉冲浮子相板的可行性
Feasibility of a Pulsed Ponderomotive Phase Plate for Electron Beams
论文作者
论文摘要
我们提出了一种基于电子束与强烈聚焦,高功率的飞秒激光脉冲和脉冲电子束的相互作用的相互作用,该方案用于构建一个相板,用于在超快的Zernike型相对比电子显微镜中使用。介绍了使用时间平均的Ponderomotive电位和聚焦激光束的近似近似的分析表达式,以及基于沿经典的,相关性电子轨迹的量子相位量的更严格的准准经典模拟,在准确的,非准确的激光束的非副电图中。结果表明,除非激光束聚焦到波长以下的腰围,否则结果表明良好。对于现实(现成的)激光参数,$-π/2 $的最佳相移可实现。当与基于RF-cavity的电子斩波和产生电子脉冲的压缩技术结合使用时,可以构建飞秒脉冲相对造影剂显微镜。使用模拟进一步研究了该方案的可行性和鲁棒性,从而导致了设计参数(例如波长,焦点大小和极化)的动机选择。
We propose a scheme for constructing a phase plate for use in an ultrafast Zernike-type phase contrast electron microscope, based on the interaction of the electron beam with a strongly focused, high-power femtosecond laser pulse and a pulsed electron beam. Analytical expressions for the phase shift using the time-averaged ponderomotive potential and a paraxial approximation for the focused laser beam are presented, as well as more rigorous quasiclassical simulations based on the quantum phase integral along classical, relativistic electron trajectories in an accurate, non-paraxial description of the laser beam. The results are shown to agree well unless the laser beam is focused to a waist size below a wavelength. For realistic (off-the-shelf) laser parameters the optimum phase shift of $-π/2$ is shown to be achievable. When combined with RF-cavity based electron chopping and compression techniques to produce electron pulses, a femtosecond regime pulsed phase contrast microscope can be constructed. The feasibility and robustness of the scheme are further investigated using the simulations, leading to motivated choices for design parameters such as wavelength, focus size and polarization.