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Triaxial deformation in 10Be

Nuclear Theory 2016-09-08 v1

Abstract

The triaxial deformation in 10^{10}Be is investigated using a microscopic α+α+n+n\alpha+\alpha+n+n model. The states of two valence neutrons are classified based on the molecular-orbit (MO) model, and the π\pi-orbit is introduced about the axis connecting the two α\alpha-clusters for the description of the rotational bands. There appear two rotational bands comprised mainly of Kπ=0+K^\pi = 0^+ and Kπ=2+K^\pi = 2^+, respectively, at low excitation energy, where the two valence neutrons occupy Kπ=3/2K^\pi = 3/2^- or Kπ=1/2K^\pi = 1/2^- orbits. The triaxiality and the KK-mixing are discussed in connection to the molecular structure, particularly, to the spin-orbit splitting. The extent of the triaxial deformation is evaluated in terms of the electro-magnetic transition matrix elements (Davydov-Filippov model, Q-invariant model), and density distribution in the intrinsic frame. The obtained values turned out to be γ=15o20o\gamma = 15^o \sim 20^o.

Keywords

Cite

@article{arxiv.nucl-th/0109039,
  title  = {Triaxial deformation in 10Be},
  author = {N. Itagaki and S. Hirose and T. Otsuka and S. Okabe and K. Ikeda},
  journal= {arXiv preprint arXiv:nucl-th/0109039},
  year   = {2016}
}

Comments

15 pages, latex, 3 figures

R2 v1 2026-07-22T18:26:00.049Z