γ-rigid solution of the Bohr Hamiltonian compared to the E(5) critical point symmetry

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γ-rigid solution of the Bohr Hamiltonian compared to the E(5) critical point symmetry (EN)

Lenis, D.
Yigitoglu, I.
Petrellis, D.
Bonatsos, Dennis
Terziev, P.

info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion

2019-12-05


A γ-rigid solution of the Bohr Hamiltonian for 7 = 30° is derived, its ground state band being related to the second order Casimir operator of the Euclidean algebra E(4). Parameter-free (up to overall scale factors) predictions for spectra and B(E2) transition rates are in close agreement to the E (5) critical point symmetry, as well as to experimental data in the Xe region around A = 130. (EN)


Annual Symposium of the Hellenic Nuclear Physics Society

English

Hellenic Nuclear Physics Society (HNPS) (EN)


2654-0088
2654-007X
Annual Symposium of the Hellenic Nuclear Physics Society; Τόμ. 14 (2005): HNPS2005; 71-76 (EL)
HNPS Advances in Nuclear Physics; Vol. 14 (2005): HNPS2005; 71-76 (EN)

Πνευματική ιδιοκτησία (c) 2019 Dennis Bonatsos, D. Lenis, D. Petrellis, P. Terziev, I. Yigitoglu (EL)




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