阿秒
飞秒
物理
电子
激光器
场电子发射
时间分辨率
光学物理学
光学
光发射
啁啾声
领域(数学)
光电子学
超短脉冲
等离子体
数学
纯数学
量子力学
作者
Hee Yong Kim,Manish Garg,S. Mandal,Lennart Seiffert,Thomas Fennel,E. Goulielmakis
出处
期刊:Nature
[Nature Portfolio]
日期:2023-01-25
卷期号:613 (7945): 662-666
被引量:28
标识
DOI:10.1038/s41586-022-05577-1
摘要
Field emission of electrons underlies great advances in science and technology, ranging from signal processing at ever higher frequencies1 to imaging of the atomic-scale structure of matter2 with picometre resolution. The advancing of electron microscopy techniques to enable the complete visualization of matter on the native spatial (picometre) and temporal (attosecond) scales of electron dynamics calls for techniques that can confine and examine the field emission on sub-femtosecond time intervals. Intense laser pulses have paved the way to this end3,4 by demonstrating femtosecond confinement5,6 and sub-optical cycle control7,8 of the optical field emission9 from nanostructured metals. Yet the measurement of attosecond electron pulses has remained elusive. We used intense, sub-cycle light transients to induce optical field emission of electron pulses from tungsten nanotips and a weak replica of the same transient to directly investigate the emission dynamics in real time. Access to the temporal properties of the electron pulses rescattering off the tip surface, including the duration τ = (53 as ± 5 as) and chirp, and the direct exploration of nanoscale near fields open new prospects for research and applications at the interface of attosecond physics and nano-optics.
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