English

Adiabatic self-consistent collective path in nuclear fusion reactions

Nuclear Theory 2017-07-26 v2

Abstract

Collective reaction paths for fusion reactions, 16^{16}O+α\alpha \rightarrow 20^{20}Ne and 16^{16}O+16^{16}O \rightarrow 32^{32}S, are microscopically determined, on the basis of the adiabatic self-consistent collective coordinate (ASCC) method. The collective path is maximally decoupled from other intrinsic degrees of freedom. The reaction paths turn out to deviate from those obtained with standard mean-field calculations with constraints on quadrupole and octupole moments. The potentials and inertial masses defined in the ASCC method are calculated along the reaction paths. The sub-barrier fusion cross sections are calculated for these systems. Inertial mass inside the Coulomb barrier may have a significant influence on the fusion cross section at the deep sub-barrier energy.

Keywords

Cite

@article{arxiv.1703.04319,
  title  = {Adiabatic self-consistent collective path in nuclear fusion reactions},
  author = {Kai Wen and Takashi Nakatsukasa},
  journal= {arXiv preprint arXiv:1703.04319},
  year   = {2017}
}

Comments

11 pages, 11 figures

R2 v1 2026-06-22T18:44:02.524Z