Kuttruff Joel, Nabben David, Zimmermann Ann-Céline, Ryabov Andrey, Baum Peter
Universität Konstanz, Fachbereich Physik, 78464 Konstanz, Germany.
Sci Adv. 2024 Jun 28;10(26):eadl6543. doi: 10.1126/sciadv.adl6543. Epub 2024 Jun 26.
Ultrafast electron microscopy provides a movie-like access to structural dynamics of materials in space and time, but fundamental atomic motions or electron dynamics are, so far, too quick to be resolved. Here, we report the all-optical control, compression, and characterization of electron pulses in a transmission electron microscope by the single optical cycles of laser-generated terahertz light. This concept provides isolated electron pulses and merges the spatial resolution of a transmission electron microscope with the temporal resolution that is offered by a single cycle of laser light. We also report the all-optical control of multi-electron states and find a substantial two-electron and three-electron anticorrelation in the time domain. These results open up the possibility to visualize atomic and electronic motions together with their quantum correlations on fundamental dimensions in space and time.
超快电子显微镜能提供类似电影的方式来观察材料在空间和时间上的结构动力学,但迄今为止,基本的原子运动或电子动力学太快而无法分辨。在此,我们报告了通过激光产生的太赫兹光的单个光学周期,在透射电子显微镜中对电子脉冲进行全光控制、压缩和表征。这一概念提供了孤立的电子脉冲,并将透射电子显微镜的空间分辨率与单个激光周期所提供的时间分辨率相结合。我们还报告了对多电子态的全光控制,并在时域中发现了显著的双电子和三电子反关联。这些结果开启了在空间和时间的基本维度上,将原子和电子运动及其量子关联可视化的可能性。