Electric quadrupole moment of the $^{33}$Al ground state

ORAL

Abstract

The ground-state $Q $moment of $^{33}$Al has been measured by applying the $\beta $-ray-detected nuclear magnetic resonance technique to spin-polarized $^{33}$Al fragments produced in the projectile fragmentation reaction. The obtained $Q $moment, $\vert Q_{exp}(^{33}$Al)\textit{$\vert $ }= 132(16) $e$mb, shows a significant deviation from the theoretical value predicted in the shell model calculation with the USD interaction. The deviation will be discussed in context of possible erosion of the $N $= 20 shell gap, by comparing the experimental $Q$ and theoretical predictions from the large scale shell model calculation and the particle-vibration coupling calculation.

Authors

  • K. Asahi

    • Tokyo Institute of Technology
    • T.I. Tech
  • H. Ueno

    • RIKEN
  • D.L. Balabanski

    • INRNE
  • J.M. Daugas

    • CEA
  • M. Depuydt

    • IKS/K.U. Leuven
  • M. De Rydt

    • IKS/K.U. Leuven
  • L. Gaudefroy

    • CEA
  • S. Grevy

    • GANIL
  • Y. Hasama

    • T.I. Tech
  • Y. Ichikawa

    • RIKEN
  • D. Kameda

    • RIKEN
  • P. Morel

    • CEA
  • T. Nagatomo

    • RIKEN
  • L. Perrot

    • IPN/Orsay
  • K. Shimada

    • Tohoku U.
  • Ch. Stoedel

    • GANIL
  • J.C. Thomas

    • GANIL
  • Y. Utsuno

    • JAEA
  • W. Vanderheijden

    • IKS/K.U. Leuven
  • N. Vermeulen

    • IKS/K.U. Leuven
  • P. Vingerhoets

    • IKS/K.U. Leuven
  • E. Yagi

    • RIKEN
  • K. Yoshida

    • RIKEN
  • A. Yoshimi

    • RIKEN
  • G. Neyens

    • IKS/K.U. Leuven