超短脉冲
飞秒
光学
电子全息术
热发射率
电子
超快电子衍射
材料科学
物理
激光器
透射电子显微镜
梁(结构)
量子力学
作者
Nora Bach,Till Domröse,Armin Feist,Thomas Rittmann,Stefanie Strauch,Claus Ropers,Sascha Schäfer
摘要
Tip-based photoemission electron sources offer unique properties for ultrafast imaging, diffraction, and spectroscopy experiments with highly coherent few-electron pulses. Extending this approach to increased bunch-charges requires a comprehensive experimental study on Coulomb interactions in nanoscale electron pulses and their impact on beam quality. For a laser-driven Schottky field emitter, we assess the transverse and longitudinal electron pulse properties in an ultrafast transmission electron microscope at a high photoemission current density. A quantitative characterization of electron beam emittance, pulse duration, spectral bandwidth, and chirp is performed. Due to the cathode geometry, Coulomb interactions in the pulse predominantly occur in the direct vicinity to the tip apex, resulting in a well-defined pulse chirp and limited emittance growth. Strategies for optimizing electron source parameters are identified, enabling advanced ultrafast transmission electron microscopy approaches, such as phase-resolved imaging and holography.
科研通智能强力驱动
Strongly Powered by AbleSci AI