Attosecond ionic photoionization spectroscopy

Author:

Xu YidanORCID,Han Lulu,Jiang Wenyu,Zuo Zitan,Pan ShengzheORCID,Fleischer Avner1ORCID,Ueda Kiyoshi23,Wu Jian45

Affiliation:

1. Tel Aviv University

2. Tohoku University

3. ShanghaiTech University

4. Shanxi University

5. Chongqing Institute of East China Normal University

Abstract

Photoionization is one of the most fundamental processes in light–matter interaction. Advanced attosecond photoelectron spectroscopy provides the possibility to characterize the ultrafast photoemission process in an extremely short attosecond time scale. Following scattering symmetry rules, residual ions encode ultrafast photoionization prints at the instant of electron removal forming an alternative electron emission chronoscope. Here, we experimentally illustrate the attosecond ion reconstruction of attosecond beating by interference of two-photon transition (RABBIT)-like interferometry through the development of high-resolution ion momentum detection in atomic photoionization processes. Our ion interferometry presents identical momentum- and time-dependent scattering phase shift, as we observed in photoelectron spectroscopy, and thus demonstrates that ion interferometry can be a possible alternative attosecond approach to resolve the photoionization process, without the electron homogeneity limitation.

Funder

National Natural Science Foundation of China

Science and Technology Commission of Shanghai Municipality

Israel Science Foundation

Publisher

Optica Publishing Group

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