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Quantum fluctuations in the collective 0_s16 states of deformed nuclei

Fang-Qi Chen, Yang Sun, and P. Ring

Keywords

No keywords

Abstract

The occurrence of low-energy collective motion is a widespread phenomenon in quantum systems. To describe fluctuations about the equilibrium deformation and to understand the nature of excited 0_s16 states in deformed nuclei, we improve the many-body wave functions by superimposing angular-momentum projected states constructed with different quadrupole deformations. We take deformed rare-earth nuclei as examples, compare quantitatively the calculated low-lying 0_s16 bands and the associated electric monopole transition matrix elements with experimental data. The analysis of the resulting wave functions for the excited 0_s16 states indicates clear features of quantum oscillations, with large fluctuations in deformation for soft nuclei and strong anharmonicities in the oscillations for rigidly deformed nuclei.

Information

Published
2013 as article (english)
Phys. Rev. C, 88, 1 - page(s): 014315
Contact
Prof. Dr. Peter Ring
Type
theoretical work
Links
pdf
link.aps.org/doi/10.…
Related to the research area(s):
G

Technische Universitaet Muenchen
Exzellenzcluster Universe

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D-85748 Garching

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