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G. A. Lalazissis

Researcher at Aristotle University of Thessaloniki

Publications -  142
Citations -  6564

G. A. Lalazissis is an academic researcher from Aristotle University of Thessaloniki. The author has contributed to research in topics: Mean field theory & Neutron. The author has an hindex of 37, co-authored 142 publications receiving 5908 citations. Previous affiliations of G. A. Lalazissis include University of Tennessee & Max Planck Society.

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New parametrization for the Lagrangian density of relativistic mean field theory

TL;DR: In this paper, a new parametrization for an effective nonlinear Lagrangian density of relativistic mean field (RMF) theory is proposed, which is able to provide a very good description not only for the properties of stable nuclei but also for those far from the valley of beta stability.
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Relativistic Hartree-Bogoliubov theory: static and dynamic aspects of exotic nuclear structure

TL;DR: A review of recent applications of self-consistent relativistic mean field models to exotic nuclear structure can be found in this article, where the authors provide a rich theoretical framework for studies of nuclei along the valley of β-stability, exotic nuclei with extreme groundstate isospin values and close to the particle drip lines.
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New relativistic mean-field interaction with density-dependent meson-nucleon couplings

TL;DR: In this paper, a new improved relativistic mean-field effective interaction with explicit density dependence of the meson-nucleon couplings was proposed. But it was only applied to the analysis of very recent data on superheavy nuclei.
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Ground-state properties of even–even nuclei in the relativistic mean-field theory☆

TL;DR: The ground state properties of 1315 even-even nuclei with 10 ≤ Z ≤ 98 have been calculated in the framework of the relativistic mean field (RMF) theory.
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The effective force NL3 revisited

TL;DR: In this paper, a modification of this parameter set was proposed, which improved the description of the ground state properties of many nuclei and simultaneously provided an excellent description of excited states with collective character in spherical and deformed nuclei.