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Table of Contents
Preface
Abbreviations
Introduction
The Central-Field Configurational Model
Distribution Functions. Energy Levels
Statistical Properties of Transition Arrays
Modeling of Ionic Spectra
Static and Dynamical Equilibrium in Plasmas
Super Configurations and Super Transition Arrays
Global Approach to Plasmas in LTE Equilibrium
Global Approaches to Non-LTE Hot Dense Plasmas. Effective Temperatures
Hybrid Models
Plasma Simulations
Applications to Hot-Plasma Radiation
Appendix A. The Tensor-Operator Formalism
Appendix B. The Second-Quantization Method for Electrons in Atoms
Appendix C. Partition Function Algebra
Appendix D. Analytical Evaluation of the Ionic-Excitation Temperature T(I)
Appendix E. Evaluation of the Radiative Power Losses of a Superconfiguration
Subject index.
Abbreviations
Introduction
The Central-Field Configurational Model
Distribution Functions. Energy Levels
Statistical Properties of Transition Arrays
Modeling of Ionic Spectra
Static and Dynamical Equilibrium in Plasmas
Super Configurations and Super Transition Arrays
Global Approach to Plasmas in LTE Equilibrium
Global Approaches to Non-LTE Hot Dense Plasmas. Effective Temperatures
Hybrid Models
Plasma Simulations
Applications to Hot-Plasma Radiation
Appendix A. The Tensor-Operator Formalism
Appendix B. The Second-Quantization Method for Electrons in Atoms
Appendix C. Partition Function Algebra
Appendix D. Analytical Evaluation of the Ionic-Excitation Temperature T(I)
Appendix E. Evaluation of the Radiative Power Losses of a Superconfiguration
Subject index.