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Theoretical Calculations of the Resonant Double Core-Excitation and Autoionization Decay of N<sub>2</sub>

POSTER

Abstract

Here we present theoretical calculations supporting the experimental observation of a molecular resonant double-core excitation process in N2. This process was driven by a single few femtosecond soft X-ray Free Electron Laser (XFEL) pulse sequentially that excites two core level electrons to the same unoccupied molecular orbital. Multiconfigurational electronic structure calculations of X-ray absorption near-edge structure show a photon energy tuned to the 1sσ → 1π*g resonance requires a minimum bandwidth around 2 eV to drive the double core-excitation and that the second core-excitation energy is lowered in energy with respect to the ground state value. High-level Auger-decay calculations of the single and double core-excited states, explicitly considering the wavefunction of the ejected electron, validate the signatures of the formation and decay of neutral two-site double core hole states are observed in the experiment. The excitation process should be general, enabling the production of exotic neutral multi-core hole states with high site- and orbital-selectivity, providing a resonant X-ray pump/probe scheme and being of general interest for XFEL measurements performed in resonant conditions.

Presenters

  • Phay J Ho

    Argonne National Laboratory

Authors

  • Adam E Fouda

    Argonne National Laboratory

  • Gilbert Grell

    Imdea Nanociencia

  • Sergey I Bokarev

    Technical University of Munich

  • Phay J Ho

    Argonne National Laboratory

  • Eetu Pelimanni

    Argonne National Laboratory

  • Linda Young

    Argonne Nat'l Lab, Argonne National Laboratory

  • James P Cryan

    SLAC National Accelerator Laboratory, Stanford PULSE Institute, Menlo Park, CA, USA

  • Iyas Ismail

    Sorbonne Universite, Synchrotron SOLEIL, Sorbonne University

  • Dimitris Koulentianos

    CFEL-DESY, Center for Free-Electron Laser Science, Argonne National Laboratory

  • Tommaso Mazza

    EuXFEL, European XFEL

  • Michael Meyer

    EuXFEL, European XFEL

  • Maria Novella N Piancastelli

    Sorbonne University-LCPMR

  • Ralph Püttner

    Frei Universitat Berlin, Freie Universitat Berlin

  • Marc Simon

    Sorbonne Universite, Sorbonne University

  • Gilles Doumy

    Argonne National Laboratory