Houdellier F, Caruso G M, Weber S, Hÿtch M J, Gatel C, Arbouet A
CEMES-CNRS, Université de Toulouse, Toulouse, France.
CEMES-CNRS, Université de Toulouse, Toulouse, France.
Ultramicroscopy. 2019 Jul;202:26-32. doi: 10.1016/j.ultramic.2019.03.016. Epub 2019 Mar 26.
We report on electron holography experiments performed with femtosecond electron pulses in an ultrafast coherent Transmission Electron Microscope based on a laser-driven cold field emission gun. We first discuss the experimental requirements related to the long acquisition times imposed by the low emission/probe current available in these instruments. The experimental parameters are first optimized and electron holograms are then acquired in vacuum and on a nano-object showing that useful physical properties can nevertheless be extracted from the hologram phase in pulsed condition. Finally, we show that the acquisition of short exposure time holograms assembled in a stack, combined with a computer-assisted shift compensation of usual instabilities encountered in holography, such as beam and biprism wire instabilities, can yield electron holograms acquired with a much better contrast paving the way to ultrafast time-resolved electron holography.
我们报告了在基于激光驱动冷场发射枪的超快相干透射电子显微镜中使用飞秒电子脉冲进行的电子全息实验。我们首先讨论与这些仪器中可用的低发射/探针电流所带来的长采集时间相关的实验要求。首先对实验参数进行优化,然后在真空中并在纳米物体上采集电子全息图,结果表明,在脉冲条件下仍可从全息图相位中提取有用的物理特性。最后,我们表明,采集堆叠在一起的短曝光时间全息图,并结合计算机辅助对全息术中常见的不稳定性(如束流和双棱镜丝不稳定性)进行位移补偿,可以产生对比度更好的电子全息图,为超快时间分辨电子全息术铺平道路。