Atoms (Nov 2021)

Relativistic Configuration-Interaction and Perturbation Theory Calculations of the Sn XV Emission Spectrum

  • Dmytro Filin,
  • Igor Savukov,
  • James Colgan

DOI
https://doi.org/10.3390/atoms9040096
Journal volume & issue
Vol. 9, no. 4
p. 96

Abstract

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Recently, there has been increased interest in developing advanced bright sources for lithography. Sn ions are particularly promising due to their bright emission spectrum in the required wavelength range. Cowan’s code has been used to model the emission; however, it has adjustable parameters, which limit its predictive power, and it has limited relativistic treatment. Here, we present calculations based on ab initio relativistic configuration-interaction many-body perturbation theory (CI-MBPT), with relativistic corrections included at the Dirac-Fock level and core-polarization effects with the second-order MBPT. As a proof of principle that the theory is generally applicable to other Sn ions with proper development, we focused on one ion where direct comparison with experimental observations is possible. The theory can also be used for ions of other elements to predict emissions for optimization of plasma-based bright sources.

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