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AbstractAbstract
[en] The Coulomb excitation of /sup 195/Pt by 125 MeV /sup 32/S projectiles has been studied using γ ray spectroscopic techniques. On the basis of supersymmetry considerations, the observation of new levels, B(E2) ratios, and B(E2) values, a new assignment of negative-parity states within the U(6/12) multi-j supersymmetry scheme of the interacting-boson-fermion model is proposed for the <σ1,σ2,σ3>-(tau 1,tau2) = <7,0,0>-(2 ,0) and <6,1,0>-(2,0) quadruplets. With this classification the simultaneous description of the low lying /sup 195/Pt and /sup 194/Pt levels within the framework of the supersymmetry scheme is greatly improved. The predicted E2 branching ratios for the decay of the (tau1,tau2)-L = (2,0)-4 levels in /sup 195/Pt are well reproduced, while for the decay of the (2,0)-2 levels discrepancies occur in both the new and the old classification
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BRANCHING RATIO, COINCIDENCE SPECTROMETRY, COULOMB EXCITATION, E2-TRANSITIONS, ENERGY LEVELS, FERMIONS, GAMMA RADIATION, INELASTIC SCATTERING, INTERACTING BOSON MODEL, INTERNAL CONVERSION RADIOISOTO, MEV RANGE 100-1000, PARITY, PLATINUM 195, PLATINUM 195 TARGET, PROBABILITY, SULFUR 32 REACTIONS, SUPERSYMMETRY, SYMMETRY BREAKING
COINCIDENCE METHODS, COUNTING TECHNIQUES, DAYS LIVING RADIOISOTOPES, ELECTROMAGNETIC RADIATION, ENERGY RANGE, ENERGY-LEVEL TRANSITIONS, EVEN-ODD NUCLEI, EXCITATION, HEAVY ION REACTIONS, HEAVY NUCLEI, IONIZING RADIATIONS, ISOMERIC TRANSITION ISOTOPES, ISOTOPES, MATHEMATICAL MODELS, MEV RANGE, MULTIPOLE TRANSITIONS, NUCLEAR MODELS, NUCLEAR REACTIONS, NUCLEI, PARTICLE PROPERTIES, PLATINUM ISOTOPES, RADIATIONS, RADIOISOTOPES, SCATTERING, SHELL MODELS, STABLE ISOTOPES, SYMMETRY, TARGETS
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