pCI: a high-precision atomic structure software package

ORAL

Abstract

We introduce the pCI software package for high-precision atomic structure calculations. The standard method of calculation is based on the configuration interaction (CI) method to describe valence correlations, but can be extended to attain better accuracy by including core correlations via many-body perturbation theory (CI+MBPT) or the all-order (CI+all-order) method. The software package enables calculations of atomic properties, including energy levels, 𝑔-factors, hyperfine structure constants, multipole transition matrix elements, polarizabilities, and isotope shifts. It also features modern high-performance computing paradigms, including dynamic memory allocations and large-scale parallelization via the message-passing interface, to optimize and accelerate computations. To improve accuracy of the calculations, we include a supplementary program package to calculate QED corrections via a variant of QEDMOD, as well as a package to include core correlations

*This work was supported by the US NSF Grants No. OAC-2209639 and PHY-2309254. MK thanks Russian Science Foundation, grant # 23-22-00079.

Publication: https://doi.org/10.1016/j.cpc.2024.109463

Presenters

  • Charles Cheung

    • University of Delaware

Authors

  • Charles Cheung

    • University of Delaware
  • Marianna S Safronova

    • University of Delaware
  • Sergey G Porsev

    • University of Delaware
  • Andrey Bondarev

    • Helmholtz Institute Jena
  • Mikhail G Kozlov

    • Petersburg Nuclear Physics Institute of NRC "Kurchatov Institute"
  • Ilya Tupitsyn

    • St. Petersburg State University