Opacity calculation for aluminum, iron, and gold plasmas using FLYCHK code

  • Cho, M.S.
  • Matsuo, K.
  • Fujioka, S.
  • Hahn, S.J.
  • Cho, B.I.
  • 외 1명
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초록

The opacity information of a finite-temperature plasma is an important property and requires the population distribution of a given plasma condition. A population kinetic code for plasma spectroscopy, FLYCHK, has been widely used by researchers to study the spectroscopic properties of high-energy-density plasmas under a wide range of conditions. In this study, the FLYCHK calculation of the Planck and Rosseland mean opacities of low- to high-Z elements, such as aluminum (Z = 13), iron (Z = 26), and gold (Z = 79), under a wide temperature and density range (T = 10−3–102 keV, ρ = 10−6–102 g/cc) is reported. This study mainly focused on the quantitative comparisons of FLYCHK opacities with commonly used opacities: ATOMIC and PROPACEOS. Comparisons show that the FLYCHK mean opacities are comparable to other results over a wide range of plasma conditions. Aluminum opacities were analyzed in detail to understand the characteristics of FLYCHK opacity simulations. © 2020 Elsevier Ltd

키워드

FLYCHKOpacityPlanck mean opacityPopulation kineticsRosseland mean opacityAluminumGoldIronPlasma theoryFinite temperaturesHigh energy density plasmasPlasma conditionsPlasma spectroscopyPopulation kineticsQuantitative comparisonRosseland mean opacitySpectroscopic propertyOpacityaluminumexperimental studygoldironplasma
제목
Opacity calculation for aluminum, iron, and gold plasmas using FLYCHK code
저자
Cho, M.S.Matsuo, K.Fujioka, S.Hahn, S.J.Cho, B.I.Chung, H.-.K.
DOI
10.1016/j.jqsrt.2020.107369
발행일
2020-12
유형
Article
저널명
Journal of Quantitative Spectroscopy and Radiative Transfer
257