Ab initio calculations of molecular double Auger decay rates.

J Chem Phys

Charles University, Faculty of Mathematics and Physics, Institute of Theoretical Physics, V Holešovičkách 2, 180 00 Prague, Czech Republic.

Published: November 2024

AI Article Synopsis

  • The Fano-ADC(2,2) method is a new technique for calculating total and partial Auger decay widths in molecular core-hole states, including double Auger decay branching ratios.
  • This method uses intermediate state representation for constructing many-electron wave functions and is applicable to different systems like atoms and molecules.
  • The results show high accuracy, with a 30% average error in double Auger decay branching ratios compared to experiments, which is considered excellent given the method's complexity and assumptions.

Article Abstract

We report on the application of the recently developed Fano-ADC(2,2) method to compute total and partial Auger decay widths of molecular core-hole states, including explicit evaluation of double Auger decay branching ratios. The method utilizes the fast-convergent intermediate state representation to construct many-electron wave functions and is readily applicable to atoms, molecules, and clusters. The ADC(2,2) scheme describes the initial and final states of the normal Auger decay consistently up to the second order of perturbation theory. In addition, excitations with two electrons in the continuum provide access to three-electron decay modes. The method yields decay widths and the Auger electron spectra in excellent agreement with the experiment, demonstrating the high accuracy of partial widths. The average relative error of double Auger decay branching ratios compared to available experimental data is about 30%, which should be evaluated as an excellent result considering the universality of the method, the complexity of the double decay process, and the neglection of nuclear motion in this study.

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http://dx.doi.org/10.1063/5.0225485DOI Listing

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