$\alpha$-cluster structure of $^{18}$O
Abstract
Background: Clustering phenomena in nuclei provide an opportunity to understand the interplay between cluster and nucleon degrees of freedom. Purpose:To study resonances in the O spectrum, populated in C+ elastic scattering. Method: The Thick Target Inverse Kinematics (TTIK) technique was used to measure the excitation function for the C+ elastic scattering. A 42 MeV C beam was used to populate states of excitation energy up to 14.9 MeV in O. The analysis was performed using a multi-level, multi-channel R-Matrix approach. Results: Detailed spectroscopic information, including spin-parities, partial - and neutron- decay widths and dimensionless reduced widths, was obtained for excited states in O between 8 and 14.9 MeV in excitation energy. Cluster-Nucleon Configuration Interaction Model calculations of the same quantities are performed and compared to the experimental results. Conclusions: Strong fragmentation of large -cluster strengths is observed in the spectrum of O making the -cluster structure of O quite different from the pattern of known quasi-rotational bands of alternating parity that are characteristic of , even-even nuclei like O and Ne.
Cite
@article{arxiv.1406.6734,
title = {$\alpha$-cluster structure of $^{18}$O},
author = {M. L. Avila and G. V. Rogachev and V. Z. Goldberg and E. D. Johnson and K. W. Kemper and Yu. M. Tchuvil'sky and A. S. Volya},
journal= {arXiv preprint arXiv:1406.6734},
year = {2014}
}