Buczolich, K., Sato, T., Ishikawa, K. L., Lackner, F., Burgdörfer, J., & Brezinova Iva. (2025). Ultrafast correlation dynamics during high-harmonic generation in multi-electron atoms. In ECAMP 15 : Monday, June 30, 2025 - Friday, July 4, 2025 : Book of Abstracts (pp. 32–32).
ECAMP 15 : Monday, June 30, 2025 - Friday, July 4, 2025 : Book of Abstracts
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Date (published):
2025
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Event name:
15th European Conference on Atoms Molecules and Photons
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Event date:
30-Jun-2025 - 4-Jul-2025
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Event place:
Innsbruck, Austria
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Number of Pages:
1
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Keywords:
High Harmonic Generation (HHG); correlation dynamics; multi-electron atoms
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Abstract:
We study the role of electronic correlations during high harmonic generation (HHG) in multi-electron atoms. Originally viewed as a process involving one single active electron, the influence of multi-electron effects on the HHG spectrum has lately been extensively studied. We quantify the time-dependence of electron-electron correlations on ultrafast time scales using correlation measures from quantum information theory.
By explicitly solving the time-dependent Schrödinger equation with
the multi-configurational time-dependent Hartee-Fock (MCTDHF)
method, we obtain fully correlated results for He, Ne, Be and Mg.
Using driving fields adjusted to the ionization potential of each atom,
such that the driving occurs in the strong-field regime and double-
ionization is negligible, we compare the HHG yields for the different
atomic species.
We find prominent features of the influence of correlations on both the
tunneling as well as the recombination step. While during tunneling
the correlations systematically increase for noble gase atoms (He, Ne),
they decrease for alkaline earth atoms (Be, Mg). During recombination
we find that the correlated electrons oscillate out of phase relative to
each other. Both processes imprint distinct signatures of correlations
on the HHG spectrum
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Research facilities:
Vienna Scientific Cluster
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Project title:
Zweiteilchen-Dichtematrix-Theorie für Attosekunden-Korrelations-Dynamik: P 35539 (FWF - Österr. Wissenschaftsfonds) PREIS: Best Presentation Award: MPQ (Max-Planck-Gesellschaft zur Förderung der Wissenschaften)
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Research Areas:
Quantum Modeling and Simulation: 20% Quantum Many-body Systems Physics: 80%