TY - GEN
T1 - Influence of the number of atomic levels on the spectral opacity of low temperature nickel and iron in the spectral range 50-300 eV
AU - Busquet, M.
AU - Klapisch, M.
AU - Gilles, D.
PY - 2013
Y1 - 2013
N2 - Opacity is a fundamental ingredient for the secular evolution of stars. The calculation of the stellar plasma absorption coefficients is complex due to the composition of these plasmas, generally an H /He dominated mixture with a low concentration of partially ionized heavy ions (the iron group). The international collaboration OPAC recently presented extensive comparisons of spectral opacities of iron and nickel for temperatures between 15 and 40 eV and for densities of ∼ 3 mg/cm3, relevant to the stellar envelope conditions [1, 2]. The role of Configuration Interaction (CI) and the influence of the number of atomic levels on the opacity using the recently improved version of HULLAC atomic code [3, 4] are illustrated in this article. Comparisons with theoretical predictions already presented in [1] are discussed.
AB - Opacity is a fundamental ingredient for the secular evolution of stars. The calculation of the stellar plasma absorption coefficients is complex due to the composition of these plasmas, generally an H /He dominated mixture with a low concentration of partially ionized heavy ions (the iron group). The international collaboration OPAC recently presented extensive comparisons of spectral opacities of iron and nickel for temperatures between 15 and 40 eV and for densities of ∼ 3 mg/cm3, relevant to the stellar envelope conditions [1, 2]. The role of Configuration Interaction (CI) and the influence of the number of atomic levels on the opacity using the recently improved version of HULLAC atomic code [3, 4] are illustrated in this article. Comparisons with theoretical predictions already presented in [1] are discussed.
UR - https://www.scopus.com/pages/publications/84891336167
U2 - 10.1051/epjconf/20135914004
DO - 10.1051/epjconf/20135914004
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AN - SCOPUS:84891336167
SN - 9782759810772
T3 - EPJ Web of Conferences
BT - IFSA 2011 - 7th International Conference on Inertial Fusion Sciences and Applications
T2 - 7th International Conference on Inertial Fusion Sciences and Applications, IFSA 2011
Y2 - 12 September 2011 through 16 September 2011
ER -