English

Decay and structure of the Hoyle state

Nuclear Theory 2016-12-26 v1 Nuclear Experiment

Abstract

The first 0+0^+ resonant state of the 12^{12}C nucleus 12{}^{12}C(02+)(0_2^+), so called the Hoyle state, is investigated in a three-α\alpha-particle (3-α\alpha) model. A wave function for the photodisintegration reaction of a 12^{12}C bound state to 3-α\alpha final states is defined and calculated by the Faddeev three-body formalism, in which three-body bound- and continuum states are treated consistently. From the wave function at the Hoyle state energy, I calculated distributions of outgoing α\alpha-particles and density distributions at interior region of the Hoyle state. Results show that a process through a two-α\alpha resonant state is dominant in the decay and contributions of the rest process are very small, less than 1 \%. There appear some peaks in the interior density distribution corresponding to configurations of an equilateral- and an isosceles triangles. It turns out that these results are obtained independently of the choice of α\alpha-particle interaction models, when they are made to reproduce the Hoyle state energy.

Keywords

Cite

@article{arxiv.1412.4176,
  title  = {Decay and structure of the Hoyle state},
  author = {Souichi Ishikawa},
  journal= {arXiv preprint arXiv:1412.4176},
  year   = {2016}
}

Comments

5 pages, 3 figures