Shape Coexistence in Even–Even Nuclei: A Theoretical Overview

Author:

Bonatsos Dennis1ORCID,Martinou Andriana1ORCID,Peroulis Spyridon K.1,Mertzimekis Theodoros J.2ORCID,Minkov Nikolay3

Affiliation:

1. Institute of Nuclear and Particle Physics, National Centre for Scientific Research “Demokritos”, 15310 Aghia Paraskevi, Attiki, Greece

2. Department of Physics, Zografou Campus, National and Kapodistrian University of Athens, 15784 Athens, Greece

3. Institute of Nuclear Research and Nuclear Energy, Bulgarian Academy of Sciences, 72 Tzarigrad Road, 1784 Sofia, Bulgaria

Abstract

The last decade has seen a rapid growth in our understanding of the microscopic origins of shape coexistence, assisted by the new data provided by the modern radioactive ion beam facilities built worldwide. Islands of the nuclear chart in which shape coexistence can occur have been identified, and the different microscopic particle–hole excitation mechanisms leading to neutron-induced or proton-induced shape coexistence have been clarified. The relation of shape coexistence to the islands of inversion, appearing in light nuclei, to the new spin-aligned phase appearing in N=Z nuclei, as well as to shape/phase transitions occurring in medium mass and heavy nuclei, has been understood. In the present review, these developments are considered within the shell-model and mean-field approaches, as well as by symmetry methods. In addition, based on systematics of data, as well as on symmetry considerations, quantitative rules are developed, predicting regions in which shape coexistence can appear, as a possible guide for further experimental efforts that can help in improving our understanding of the details of the nucleon–nucleon interaction, as well as of its modifications occurring far from stability.

Funder

Bulgarian Science Fund

Publisher

MDPI AG

Subject

Condensed Matter Physics,Nuclear and High Energy Physics,Atomic and Molecular Physics, and Optics

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2. Phase transitions in N=40 , 60, and 90 nuclei;Physical Review C;2024-08-20

3. Fast-timing measurements of nuclear lifetimes in the Z ~ 50 region;HNPS Advances in Nuclear Physics;2024-07-31

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