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arXiv:1310.6188·v1·Nuclear Experiment

Evidence for shape coexistence in Mo

T. Thomas🇩🇪 · K. Nomura🇫🇷 · V. Werner🇺🇸 · T. Ahn🇺🇸 · N. Cooper🇺🇸 · H. Duckwitz🇩🇪 · M. Hinton🇺🇸 · G. Ilie🇺🇸 · J. Jolie🇩🇪 · P. Petkov🇩🇪 · D. Radeck🇩🇪

Abstract

A angular correlation experiment has been performed to investigate the low-energy states of the nucleus Mo. The new data, including spin assignments, multipole mixing ratios and lifetimes reveal evidence for shape coexistence and mixing in Mo, arising from a proton intruder configuration. This result is reproduced by a theoretical calculation within the proton-neutron interacting boson model with configuration mixing, based on microscopic energy density functional theory. The microscopic calculation indicates the importance of the proton particle-hole excitation across the Z=40 sub-shell closure and the subsequent mixing between spherical vibrational and the -soft equilibrium shapes in Mo.

Comments: 6 pages, 5 figures, 3 tables; published in Phys. Rev. C

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