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Influence of dense plasma on the energy levels and transition properties in highly charged ions
42
Citations
22
References
2018
Year
EngineeringPlasma SciencePlasma ScreeningPlasma PhysicsComputational ChemistryIon ProcessDense PlasmaIon SphereIon EmissionEnergy LevelsPhysicsApplied Plasma PhysicAtomic PhysicsTransition PropertiesQuantum ChemistryNatural SciencesApplied PhysicsPlasma EnvironmentsIon Structure
The studies of the influence of plasma environments on the level structures and transition properties for highly charged ions are presented. For the relativistic treatment, we implemented the multiconfiguration Dirac-Fock method incorporating the ion sphere (IS) model potential, in which the plasma screening is taken into account as a modified interaction potential between the electron and the nucleus. For the nonrelativistic treatment, analytical solutions of the Schrödinger equation with two types of the IS screened potential are proposed. The Ritz variation method is used with hydrogenic wave function as a trial wave function that contains two unknown variational parameters. Bound energies are derived from an energy equation, and the variational parameters are obtained from the minimisation condition of the expectation value of the energy. Numerical results for hydrogen-like ions in dense plasmas are presented as examples. A detailed analysis of the influence of relativistic effects on the energy levels and transition properties is also reported. Our results are compared with available results in the literature showing a good quantitative agreement.
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