English

Unified description of $^6$Li structure and deuterium-$^4$He dynamics with chiral two- and three-nucleon forces

Nuclear Theory 2015-06-03 v1

Abstract

Prototype for the study of weakly bound projectiles colliding on stable targets, the scattering of deuterium (dd) on 4^4He (α\alpha) is an important milestone in the search for a fundamental understanding of low-energy reactions. At the same time, it is also important for its role in the Big-bang nucleosynthesis of 6^6Li and applications in the characterization of deuterium impurities in materials. We present the first unified {\em ab initio} study of the 6^6Li ground state and dd-4^4He elastic scattering using two- and three-nucleon forces derived within the framework of chiral effective field theory. The six-nucleon bound-state and scattering observables are calculated by means of the no-core shell model with continuum. %and are compared to available experimental data. We analyze the influence of the dynamic polarization of the deuterium and of the chiral three-nucleon force, and examine the role of the continuum degrees of freedom in shaping the low-lying spectrum of 6^6Li. We find that the adopted Hamiltonian correctly predicts the binding energy of 6^6Li, yielding an asymptotic DD- to SS-state ratio of the 6^6Li wave function in d+αd+\alpha configuration of 0.027-0.027 in agreement with the value determined from a phase shift analysis of 6^6Li+4^4He elastic scattering, but overestimates the excitation energy of the first 3+3^+ state by 350350 keV. The bulk of the computed differential cross section is in good agreement with data.

Keywords

Cite

@article{arxiv.1412.4101,
  title  = {Unified description of $^6$Li structure and deuterium-$^4$He dynamics with chiral two- and three-nucleon forces},
  author = {Guillaume Hupin and Sofia Quaglioni and Petr Navrátil},
  journal= {arXiv preprint arXiv:1412.4101},
  year   = {2015}
}

Comments

5 pages, 5 figures