2007Progress in Particle and Nuclear PhysicsOpen access

Relativistic quasiparticle random phase approximation in deformed nuclei

Daniel Arteaga, P. Ring

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Abstract

The first results of the solution of the Relativistic Quasiparticle Random Phase Approximation (QRPA) in axial symmetry are presented. Three different relativistic density functionals have been implemented in a fully self-consistent fashion. Example applications for E1 and M1 excitations in 20Ne, 26Ne and 160Gd are studied.

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The first results of the solution of the Relativistic Quasiparticle Random Phase Approximation (QRPA) in axial symmetry are presented. Three different relativistic density functionals have been implemented in a fully self-consistent fashion. Example applications for E1 and M1 excitations in 20Ne, 26Ne and 160Gd are studied.

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Available abstract

The first results of the solution of the Relativistic Quasiparticle Random Phase Approximation (QRPA) in axial symmetry are presented. Three different relativistic density functionals have been implemented in a fully self-consistent fashion. Example applications for E1 and M1 excitations in 20Ne, 26Ne and 160Gd are studied.

Key concepts: Quasiparticle, Physics, Random phase approximation, Symmetry (geometry), Phase (matter), Quantum electrodynamics, Quantum mechanics, Geometry

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