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XUE Fu-Zeng, LI Zhao-Ning, PAN Shou-Fu. Fe26 Equation of State Calculations for Hot Dense Matter at Arbitrary Density and Temperature[J]. Chinese Journal of High Pressure Physics, 1989, 3(1): 58-66 . doi: 10.11858/gywlxb.1989.01.008
Citation: XUE Fu-Zeng, LI Zhao-Ning, PAN Shou-Fu. Fe26 Equation of State Calculations for Hot Dense Matter at Arbitrary Density and Temperature[J]. Chinese Journal of High Pressure Physics, 1989, 3(1): 58-66 . doi: 10.11858/gywlxb.1989.01.008

Fe26 Equation of State Calculations for Hot Dense Matter at Arbitrary Density and Temperature

doi: 10.11858/gywlxb.1989.01.008
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  • Corresponding author: XUE Fu-Zeng
  • Received Date: 21 Aug 1988
  • Rev Recd Date: 22 Oct 1988
  • Publish Date: 05 Mar 1989
  • In the spherical lattice cell, central-field and relativistic Fermi statistics approximations, an algorithm is presented with average atom model to calculate electron levels and the equation of state for hot and dense matter at arbitrary density and temperature. Zink's analytic potential is chosen as starting potential to solve Dirac-Slater equation satisfying the Wigner-Seitz boundary condition. The pressure ionization effects are included by level degeneracy as a founction of density for dense matter. Results are show for Fe26 atom.

     

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