English

R-matrix analysis of elastic scattering, phase shift and radiative capture reaction cross sections in the $\alpha + \alpha$ system

Nuclear Theory 2022-10-12 v1 Nuclear Experiment

Abstract

The unstable nucleus 8^8Be, with its two α\alpha-cluster configuration, is the doorway to the formation of heavier α\alpha-cluster nuclei. Most importantly, its the precursor of the production of 12^{12}C through the Hoyle state, a resonance state of three α\alpha clusters, in the helium burning phase of a massive star. The nucleus exhibits a ground state band of rotational states established through αα\alpha-\alpha scattering experiments. A subsequent precision particle-γ\gamma coincidence measurement of the electromagnetic transition between the 4+^+\rightarrow 2+^+ excited states also corroborated the evidence for a highly deformed dumb-bell shaped structure of 8^8Be. A simultaneous phenomenological R-matrix analysis of the measured capture reaction cross sections along with the elastic excitation function and phase shift data has been performed. The resulting reduced transition strength of 21.96±\pm3.86 e2fm4e^2 fm^4 compares well with the estimated experimental value of 21.0±\pm2.3 e2^2 fm4^4. The R-matrix yield of the B(E2E2) value is closer to the prediction of cluster model but about 19%\% less than the {\it ab initio} result.

Keywords

Cite

@article{arxiv.2205.06488,
  title  = {R-matrix analysis of elastic scattering, phase shift and radiative capture reaction cross sections in the $\alpha + \alpha$ system},
  author = {Suprita Chakraborty and Rajkumar Santra and Subinit Roy and V. M. Datar},
  journal= {arXiv preprint arXiv:2205.06488},
  year   = {2022}
}