Dipole excitations in 122Te, 126Te and 130Te View Full Text


Ontology type: schema:ScholarlyArticle     


Article Info

DATE

1997-02

AUTHORS

R. Schwengner, W. Schauer, G. Winter, P. von Brentano, J. Eberth, J. Enders, T. von Egidy, M. Grinberg, R.-D. Herzberg, N. Huxel, L. Käubler, P. von Neumann-Cosel, N. Nicolay, J. Ott, N. Pietralla, H. Prade, S. Raman, J. Reif, A. Richter, C. Schlegel, H. Schnare, T. Servene, S. Skoda, C. Stoyanov, H.G. Thomas, I. Wiedenhöver, A. Zilges

ABSTRACT

Excited states of the nuclei 122Te, 126Te and 130Te were populated via the (γ, γ') reaction at endpoint energies of the bremsstrahlung between 4.5 and 5.5 MeV. Gamma rays were detected with a EUROBALL-CLUSTER detector and a single detector. In all nuclei several dipole transitions were identified at energies around 3 MeV. The lowest corresponding J = 1 states are interpreted as two-phonon excitations. Quasiparticle-phonon-model calculations predict one 1− state arising from the coupling of the first quadrupole and the first octupole phonon and one 1+ state arising from the coupling of the first and the isovector second quadrupole phonon at about 3 MeV. The calculated transition strengths are compatible with experimental ones. More... »

PAGES

197-198

Identifiers

URI

http://scigraph.springernature.com/pub.10.1007/s002180050306

DOI

http://dx.doi.org/10.1007/s002180050306

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1020259996


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6 schema:description Excited states of the nuclei 122Te, 126Te and 130Te were populated via the (γ, γ') reaction at endpoint energies of the bremsstrahlung between 4.5 and 5.5 MeV. Gamma rays were detected with a EUROBALL-CLUSTER detector and a single detector. In all nuclei several dipole transitions were identified at energies around 3 MeV. The lowest corresponding J = 1 states are interpreted as two-phonon excitations. Quasiparticle-phonon-model calculations predict one 1− state arising from the coupling of the first quadrupole and the first octupole phonon and one 1+ state arising from the coupling of the first and the isovector second quadrupole phonon at about 3 MeV. The calculated transition strengths are compatible with experimental ones.
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