English

$Ab~initio$ description of collectivity for $sd$ shell nuclei

Nuclear Theory 2019-04-15 v1

Abstract

In the present work, we have reported shell model results for open shell nuclei Ne, Mg and Si isotopes with 10N2010 \leq N \leq 20 in sdsd-shell model space. We have performed calculations in sdsd shell with two ab initioab~initio approaches: in-medium similarity renormalization group (IM-SRG) and coupled-cluster (CC) theory. We have also performed calculations with phenomenological USDB interaction and chiral effective field theory based CEFT interaction. The results for rotational spectra and B(E2;21+01+)B(E2;2_1^+\rightarrow 0_1^+) transitions are reported for even-mass isotopes. The IM-SRG and CC results are in reasonable agreement with the experimental data except at NN =20. This demonstrates a validity of ab initioab~initio description of deformation for doubly open-shell nuclei for sdsd shell. To see the importance of pfpf orbitals, we have also compared our results with SDPF-MU interaction by taking account of 2p2h2p-2h and 4p4h4p-4h configurations in sdsd-pfpf-shell model space.

Keywords

Cite

@article{arxiv.1904.01225,
  title  = {$Ab~initio$ description of collectivity for $sd$ shell nuclei},
  author = {A. Saxena and A. Kumar and V. Kumar and P. C. Srivastava and T. Suzuki},
  journal= {arXiv preprint arXiv:1904.01225},
  year   = {2019}
}

Comments

Hyperfine Interactions (Springer) - Accepted

R2 v1 2026-06-23T08:26:27.274Z