Beyond mean-field approach for pear-shaped hypernuclei
Abstract
We develop both relativistic mean field and beyond approaches for hypernuclei with possible quadrupole-octupole deformation or pear-like shapes based on relativistic point-coupling energy density functionals. The symmetries broken in the mean-field states are recovered with parity, particle-number, and angular momentum projections. We take Ne as an example to illustrate the method, where the hyperon is put on one of the two lowest-energy orbits (labeled as ), respectively. We find that the hyperon in both cases disfavors the formation of a reflection-asymmetric molecular-like O structure in Ne, which is consistent with the Nilsson diagram for the hyperon in deformation plane. In particular, we show that the negative-parity states with the configuration Ne( are close in energy to those with the configuration Ne(, even though they have very different structures. The () becomes more and more concentrated around the bottom (top) of the "pear" with the increase of octupole deformation.
Cite
@article{arxiv.1811.01486,
title = {Beyond mean-field approach for pear-shaped hypernuclei},
author = {H. J. Xia and X. Y. Wu and H. Mei and J. M. Yao},
journal= {arXiv preprint arXiv:1811.01486},
year = {2018}
}
Comments
7 pages, 6 figures, to be published in SCIENCE CHINA Physics, Mechanics & Astronomy (2019)