English

Characteristic \alpha and ^{6}He decays of the linear-chains in ^{16}C

Nuclear Theory 2018-05-23 v1

Abstract

The linear-chain states of 16^{16}C and their decay modes are theoretically investigated by using the antisymmetrized molecular dynamics. It is found that the positive-parity linear-chain states have the (3/2π)2(1/2σ)2(3/2^-_\pi)^2(1/2^-_\sigma)^2 configuration and primary decay to the 12^{12}Be(21+2^+_1) as well as to the 12^{12}Be(g.s.) by the α\alpha particle emission. Moreover, we show that they also decay to the 6He+10Be^6{\rm He}+{}^{10}{\rm Be} channel. In the negative-parity states, it is found that two types of the linear-chains exist. One has the valence neutrons occupying the molecular-orbits (3/2π)2(1/2σ)(3/2π+)(3/2^-_\pi)^2(1/2^-_\sigma)(3/2^+_\pi), while the other's configuration cannot be explained in terms of the molecular orbits because of the strong parity mixing. Both configurations constitute the rotational bands with large moment of inertia and intra-bands E2E2 transitions. Their α\alpha and 6He{}^{6}{\rm He} reduced widths are sufficiently large to be distinguished from other non-cluster states although they are smaller than those of the positive-parity linear-chain.

Keywords

Cite

@article{arxiv.1801.05323,
  title  = {Characteristic \alpha and ^{6}He decays of the linear-chains in ^{16}C},
  author = {Tomoyuki Baba and Masaaki Kimura},
  journal= {arXiv preprint arXiv:1801.05323},
  year   = {2018}
}

Comments

arXiv admin note: text overlap with arXiv:1605.05567