Multidimensional high harmonic spectroscopy of polyatomic molecules: detecting sub-cycle laser-driven hole dynamics upon ionization in strong mid-IR laser fields

Author:

Bruner Barry D.1234,Mašín Zdeněk567,Negro Matteo8910,Morales Felipe567,Brambila Danilo567,Devetta Michele8910ORCID,Faccialà Davide1112910,Harvey Alex G.567,Ivanov Misha567,Mairesse Yann13141516,Patchkovskii Serguei567,Serbinenko Valeria567,Soifer Hadas123417,Stagira Salvatore1112910,Vozzi Caterina8910,Dudovich Nirit1234,Smirnova Olga567

Affiliation:

1. Department of Physics of Complex Systems

2. Weizmann Institute of Science

3. Rehovot 76100

4. Israel

5. Max Born Institute for Nonlinear Optics and Short Pulse Spectroscopy

6. 12489 Berlin

7. Germany

8. Istituto di Fotonica e Nanotecnologie-CNR

9. Milan 20133

10. Italy

11. Dipartimento di Fisica

12. Politecnico di Milano

13. CELIA

14. Université de Bordeaux-CNRS-CEA

15. F33405 Talence

16. France

17. Stanford Institute for Materials and Energy Sciences

Abstract

High harmonic generation (HHG) spectroscopy has opened up a new frontier in ultrafast science, where electronic dynamics can be measured on an attosecond time scale. The strong laser field that triggers the high harmonic response also opens multiple quantum pathways for multielectron dynamics in molecules, resulting in a complex process of multielectron rearrangement during ionization. Using combined experimental and theoretical approaches, we show how multi-dimensional HHG spectroscopy can be used to detect and follow electronic dynamics of core rearrangement on sub-laser cycle time scales. We detect the signatures of laser-driven hole dynamics upon ionization and reconstruct the relative phases and amplitudes for relevant ionization channels in a CO2 molecule on a sub-cycle time scale. Reconstruction of channel-resolved complex ionization amplitudes on attosecond time scales has been a long-standing goal of high harmonic spectroscopy. Our study brings us one step closer to fulfilling this initial promise and developing robust schemes for sub-femtosecond imaging of multielectron rearrangement in complex molecular systems.

Funder

Israeli Centers for Research Excellence

European Research Council

Engineering and Physical Sciences Research Council

Minerva Foundation

German-Israeli Foundation for Scientific Research and Development

Deutsche Forschungsgemeinschaft

European Cooperation in Science and Technology

Publisher

Royal Society of Chemistry (RSC)

Subject

Physical and Theoretical Chemistry

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