High-spin structure of $^{87}$Sr and $^{87}$Zr nuclei : shell model interpretation
Abstract
In the present work we report a comprehensive analysis of shell model results for high-spin states of Sr and Zr for recently available experimental data within the full model space using JUN45 and jj44b effective interactions developed for this model space. In this work we have compared the energy levels, electromagnetic transition probabilities, quadrupole and magnetic moments with available experimental data. We have confirmed structure of high-spin states of these two nuclei which were tentatively assigned in the recent experimental work. In the case of Sr, for positive parity states up to 7.5 MeV, both interactions predict very good agreement with experimental data, while negative parity states are slightly suppressed in jj44b calculation.For the Zr nucleus, the jj44b interaction predicts higher energies for the negative parity states beyond . The configuration, which have one hole in orbital, is responsible for generating the states in Sr. In the case of Zr, low-lying positive parity states come with the configuration having three holes in the , while the odd-parity states have configuration .
Keywords
Cite
@article{arxiv.1603.04354,
title = {High-spin structure of $^{87}$Sr and $^{87}$Zr nuclei : shell model interpretation},
author = {P. C. Srivastava and Vikas Kumar and M. J. Ermamatov},
journal= {arXiv preprint arXiv:1603.04354},
year = {2016}
}
Comments
14 pages,4 figures; Acta Physica Polonica B (in press)