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Configuration mixing of angular-momentum projected triaxial relativistic mean-field wave functions. II. Microscopic analysis of low-lying states in magnesium isotopes

J. M. Yao, H. Mei, H. Chen, J. Meng, P. Ring, and D. Vretenar

Keywords

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Abstract

The recently developed structure model that uses the generator coordinate method to perform configuration mixing of angular-momentum projected wave functions, generated by constrained self-consistent relativistic mean-field calculations for triaxial shapes (3DAMP_s16GCM), is applied in a systematic study of ground states and low-energy collective states in the even-even magnesium isotopes 20-40Mg. Results obtained using a relativistic point-coupling nucleon-nucleon effective interaction in the particle-hole channel, and a density-independent delta-interaction in the pairing channel, are compared to data and with previous axial 1DAMP_s16GCM calculations, both with a relativistic density functional and the non-relativistic Gogny force. The effects of the inclusion of triaxial degrees of freedom on the low-energy spectra and E2 transitions of magnesium isotopes are examined.

Information

Published
2011 as article (english)
Phys. Rev., C83 - page(s): 014308
Contact
Prof. Dr. Peter Ring
Type
theoretical work
Links
pdf
spires
www-library.desy.de/…
Related to the research area(s):
G
e-Print
1006.1400

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