Intertwined quantum phase transitions in the Zr chain
Nuclear Theory
2019-12-09 v1
Abstract
We introduce the notion of intertwined quantum phase transitions (IQPTs), for which a crossing of two configurations coexists with a pronounced shape-evolution of each configuration. A detailed analysis in the framework of the interacting boson model with configuration mixing, provides evidence for this scenario in the Zr isotopes. The latter exhibit a normal configuration which remains spherical along the chain, but exchanges roles with an intruder configuration, which undergoes first a spherical to prolate-deformed [U(5)SU(3)] QPT and then a crossover to -unstable [SU(3)SO(6)].
Keywords
Cite
@article{arxiv.1908.06677,
title = {Intertwined quantum phase transitions in the Zr chain},
author = {N. Gavrielov and A. Leviatan and F. Iachello},
journal= {arXiv preprint arXiv:1908.06677},
year = {2019}
}
Comments
4 pages, 5 figures, Proceedings of the IV International Conference on Nuclear Structure and Dynamics NSD2019, May 13-17, 2019, Venice, Italy