An effective field theory approach to fermionic rotational bands in nuclei
Nuclear Theory
2022-01-05 v1 Nuclear Experiment
Abstract
We extend an effective field theory developed to describe rotational bands in even-even nuclei to the odd-mass case. This organizes Bohr and Mottelson's treatment of a particle coupled to a rotor as a model-independent expansion in powers of the angular velocity of the overall system. We carry out this expansion up to fourth order in the angular velocity and present results for Tc, Dy, Er, Tm, W, U and Pu. In each case, the accuracy and breakdown scale of the effective field theory can be understood based on the single-particle and vibrational energy scales in that nucleus.
Keywords
Cite
@article{arxiv.2011.01083,
title = {An effective field theory approach to fermionic rotational bands in nuclei},
author = {I. K. Alnamlah and E. A. Coello Pérez and D. R. Phillips},
journal= {arXiv preprint arXiv:2011.01083},
year = {2022}
}
Comments
20 pages, 14 figures