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Electron-impact excitation of Fe²⁺: a comparison of intermediate coupling frame transformation, Breit-Pauli and Dirac R-matrix calculations

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arxiv 1402.4743 v1 pith:TYERKTWK submitted 2014-02-19 astro-ph.GA physics.atom-ph

Electron-impact excitation of Fe²⁺: a comparison of intermediate coupling frame transformation, Breit-Pauli and Dirac R-matrix calculations

classification astro-ph.GA physics.atom-ph
keywords calculationselectron-impactexcitationicftr-matrixsamebreit-paulicoupling
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Modeling the spectral emission of low-charge iron group ions enables the diagnostic determination of the local physical conditions of many cool plasma environments such as those found in H II regions, planetary nebulae, active galactic nuclei etc. Electron-impact excitation drives the population of the emitting levels and, hence, their emissivities. By carrying-out Breit-Pauli and intermediate coupling frame transformation (ICFT) R-matrix calculations for the electron-impact excitation of Fe$^{2+}$ which both use the exact same atomic structure and the same close-coupling expansion, we demonstrate the validity of the application of the powerful ICFT method to low-charge iron group ions. This is in contradiction to the finding of Bautista et al. [Ap.J.Lett, 718, L189, (2010)] who carried-out ICFT and Dirac R-matrix calculations for the same ion. We discuss possible reasons.

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