English

New high-spin structure and possible chirality in $^{109}$In

Nuclear Experiment 2018-07-11 v1 Nuclear Theory

Abstract

High-spin structure of 109^{109}In has been investigated with the 100^{100}Mo(14^{14}N, 5nn)109^{109}In reaction at a beam energy of 78 MeV using the in-beam γ\gamma spectroscopic method. The level scheme of 109^{109}In has been modified considerably and extended by 46 new γ\gamma-rays to the highest excited state at 8.979 MeV and JπJ^{\pi}=(45/2+^{+}). The new level scheme consists of eight bands, six of which are identified as dipole bands. The configurations have been tentatively assigned with the help of the systematics of neighboring odd-AA indium isotopes and the experimental aligned angular momenta. The dipole bands are then compared with the titled axis cranking calculation in the framework of covariant density function theory (TAC-CDFT). The results of theoretical calculation based on the configurations, which involve one proton hole at the g9/2g_{9/2} orbital and two or four unpaired neutrons at g7/2g_{7/2}, d5/2d_{5/2} and h11/2h_{11/2} orbitals, show that the shape of 109^{109}In undergoes an evolution on both β\beta and γ\gamma deformations and possible chirality is suggested in 109^{109}In.

Keywords

Cite

@article{arxiv.1802.05407,
  title  = {New high-spin structure and possible chirality in $^{109}$In},
  author = {M. Wang and Y. Y. Wang and L. H. Zhu and B. H. Sun and G. L. Zhang and L. C. He and W. W. Qu and F. Wang and T. F. Wang and Y. Y. Chen and C. Xiong and J. Zhang and J. M. Zhang and Y. Zheng and C. Y. He and G. S. Li and J. L. Wang and X. G. Wu and S. H. Yao and C. B. Li and H. W. Li and S. P. Hu and J. J. Liu},
  journal= {arXiv preprint arXiv:1802.05407},
  year   = {2018}
}

Comments

15 pages, 10 figures, 2 tables, 75 conference

R2 v1 2026-06-23T00:23:06.404Z