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Reflection-asymmetric nuclear deformations within the Density Functional Theory

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arxiv 1303.0604 v1 pith:ZPA6BVCR submitted 2013-03-04 nucl-th

classification nucl-th
keywords densitybindingenergyfunctionalnuclearreflection-asymmetrictheoryapproximate
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Within the nuclear density functional theory (DFT) we study the effect of reflection-asymmetric shapes on ground-state binding energies and binding energy differences. To this end, we developed the new DFT solver AxialHFB that uses an approximate second-order gradient to solve the Hartree-Fock-Bogoliubov equations of superconducting DFT with the quasi-local Skyrme energy density functionals. Illustrative calculations are carried out for even-even isotopes of radium and thorium.

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