Search for Fingerprints of Tetrahedral Symmetry in $^{156}Gd$

dc.creatorDoan, Q. T.
dc.creatorCurien, D.
dc.creatorStezowski, O.
dc.creatorDudek, J.
dc.creatorMazurek, K.
dc.creatorGozdz, A.
dc.creatorPiot, J.
dc.creatorDuchene, G.
dc.creatorGall, B.
dc.creatorMolique, H.
dc.creatorRichet, M.
dc.creatorMedina, P.
dc.creatorGuinet, D.
dc.creatorRedon, N.
dc.creatorSchmitt, C.
dc.creatorJones, P.
dc.creatorJulin, R.
dc.creatorPeura, P.
dc.creatorKetelhut, S.
dc.creatorNyman, M.
dc.creatorJakobsson, U.
dc.creatorMaj, A.
dc.creatorZuber, K.
dc.creatorBednarczyk, P.
dc.creatorSchunck, N.
dc.creatorDobaczewski, J.
dc.creatorAstier, A.
dc.creatorDeloncle, I.
dc.creatorVerney, D.
dc.creatorDe Angelis, G.
dc.creatorGerl, J.
dc.date2008-11-08
dc.date2008-12-01
dc.date.accessioned2026-07-07T13:07:37Z
dc.date.available2026-07-07T13:07:37Z
dc.descriptionTheoretical predictions suggest the presence of tetrahedral symmetry as an explanation for the vanishing intra-band E2-transitions at the bottom of the odd-spin negative parity band in $^{156}Gd$. The present study reports on experiment performed to address this phenomenon. It allowed to determine the intra-band E2 transitions and branching ratios B(E2)/B(E1) of two of the negative-parity bands in $^{156}Gd$.
dc.descriptionpresented by Q.T. Doan at XLII Zakopane School of Physics: Breaking Frontiers: Submicron Structures in Physics and Biology, May 2008. 5 pages, minor corrections. To be published in the proceedings
dc.identifierhttps://arxiv.org/abs/0811.1283
dc.identifierhttp://arxiv.org/abs/0811.1283
dc.identifierActa Phys.Polon.B40:725-730,2009
dc.identifier.urihttp://salesiana.dossiersoluciones.com/handle/123456789/228150
dc.subjectNuclear Experiment
dc.titleSearch for Fingerprints of Tetrahedral Symmetry in $^{156}Gd$
dc.typetext

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