English

Deformation and $\alpha$ clustering in excited states of $^{42}$Ca

Nuclear Theory 2020-01-16 v2 Nuclear Experiment

Abstract

The coexistence of various low-lying deformed states in 42^{42}Ca and α\alpha--38^{38}Ar correlations in those deformed states have been investigated using deformed-basis antisymmetrized molecular dynamics. Wave functions of the low-lying states are obtained via parity and angular momentum projections and the generator coordinate method (GCM). Basis wave functions of the GCM calculation are obtained via energy variations with constraints on the quadrupole deformation parameter β\beta and the distance between α\alpha and 38^{38}Ar clusters. The rotational band built on the Jπ=02+J^\pi = 0_2^+ (1.84 MeV) state as well as the Jπ=03+J^\pi = 0_3^+ (3.30 MeV) state are both reproduced. The coexistence of two additional Kπ=0+K^\pi = 0^+ rotational bands is predicted; one band is shown to be built on the Jπ=03+J^\pi = 0_3^+ state. Members of the ground-state band and the rotational band built on the Jπ=03+J^\pi = 0_3^+ state contain α\alpha--38^{38}Ar cluster structure components.

Keywords

Cite

@article{arxiv.1210.3130,
  title  = {Deformation and $\alpha$ clustering in excited states of $^{42}$Ca},
  author = {Yasutaka Taniguchi},
  journal= {arXiv preprint arXiv:1210.3130},
  year   = {2020}
}

Comments

11 pages, 6 figures