English

Phase transitions in N = 40, 60 and 90 nuclei

Nuclear Theory 2024-07-24 v1

Abstract

In this paper we focus on three mass regions where first-order phase transitions occur, namely for N=40N=40, 60 and 90. We investigate four isotopic chains (Se, Zr, Mo and Nd) in the framework of microscopic Skyrme-Hartree-Fock + Bardeen-Cooper-Schrieffer calculations for 15 different parametrizations. The microscopic calculations show the typical behavior expected for first-order phase transitions. To find the best candidate for the critical point phase transition we propose new microscopic position and occupation indices calculated for positive-parity and negative-parity proton and neutron single-quasiparticle states around the Fermi level. The microscopic calculations are completed by macroscopic calculations within the Algebraic Collective Model (ACM), and compared to the experimental data for 74^{74}Se, 102^{102}Mo and 150^{150}Nd, considered to be the best candidates for the critical point nuclei.

Keywords

Cite

@article{arxiv.2407.16428,
  title  = {Phase transitions in N = 40, 60 and 90 nuclei},
  author = {A. Prášek and P. Alexa and D. Bonatsos and G. Thiamová and D. Petrellis and P. Veselý},
  journal= {arXiv preprint arXiv:2407.16428},
  year   = {2024}
}

Comments

accepted in Phys. Rev. C