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Emergence of quadrupole and octupole collectivity near N = 50 and Z = 40 : Coulomb excitation of Mo 92
Journal article   Peer reviewed

Emergence of quadrupole and octupole collectivity near N = 50 and Z = 40 : Coulomb excitation of Mo 92

J. Heery, J. Henderson, E. Yüksel, J. A. Purcell, B. A. Brown, A. D. Ayangeakaa, L. Canete, S. Carmichael, M. Carpenter, W. N. Catford, …
Physical review. C, Vol.114(2), 024338
08/2026

Abstract

The collective structure of low-lying states in the N = 50 nucleus 92Mo (Z = 42) has been investigated through sub-barrier Coulomb excitation using the CHICO2 device coupled to the gamma-ray energy tracking in-beam nuclear array (GRETINA). Quadrupole and octupole collective properties are measured for the 2+1, 2+2 , 2+3 , 2+4 , and 3-1 states. The spectroscopic quadrupole moment for the 2+1 state is measured to be Qs = 0.23(8) eb, showing a weakly deformed oblate nature in good agreement with recent state-of-the-art Shell-Model calculations. A modest reduced electric-octupole transition strength of B(E 3; 3-1-* 0+1 ) = 15(3) W.u. is obtained, in disagreement with the literature, revealing an emerging tension in the strength of octupole collectivity for the N = 50 nuclei between historic (e, e') and (p, p') experiments and more recent experiments utilizing Coulomb excitation and lifetime plus branching-ratio data.

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