Unified description of odd-mass In nuclei. III. Application to /sup 119,121/In
We describe the odd-mass indium nuclei A=119, 121 within the framework of the unified-model taking into account the coupling of single-hole and one-particle--two-hole proton configurations with quadrupole and octupole vibrations of the underlying core. Besides the energy spectra, spectroscopic factors for pickup and electromagnetic transition properties (branching ratios, T/sub 1/2/(1/2/sup +//sub 1/); delta(3/2/sup -//sub 1/..-->..1/2/sup -//sub 1/)) are calculated and compared with experimental data, mainly for /sup 119/In. The yrast structure of the vibrational multiplet states has also been studied in lowest order perturbation theory and in the unified-model description. These calculations are also approached from a deformed zero-order description giving the total potential energy surfaces of all odd-mass In nuclei. Extensive band-mixing calculations produce energy spectra for the 1/2/sup +/ rotational-like band and are used to calculate static moments and transition rates. The equivalence with the former, spherical description is pointed out.
- Research Organization:
- Institut de Physique Nucleaire (and IN2P3), Universite Lyon I 43, Bd du 11 Novembre 1918, 69622 Villeurbanne Cedex, France
- OSTI ID:
- 5153188
- Journal Information:
- Phys. Rev., C; (United States), Vol. 22:3
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
INDIUM 119
ENERGY LEVELS
INDIUM 121
BRANCHING RATIO
CORIOLIS FORCE
DEFORMED NUCLEI
ENERGY SPECTRA
ENERGY-LEVEL TRANSITIONS
HALF-LIFE
PARITY
PARTICLE-HOLE MODEL
PERTURBATION THEORY
POTENTIAL ENERGY
SPECTROSCOPIC FACTORS
SPIN
UNIFIED MODEL
VIBRATIONAL STATES
YRAST STATES
ANGULAR MOMENTUM
BETA DECAY RADIOISOTOPES
BETA-MINUS DECAY RADIOISOTOPES
ENERGY
EXCITED STATES
INDIUM ISOTOPES
INTERMEDIATE MASS NUCLEI
ISOMERIC TRANSITION ISOTOPES
ISOTOPES
MATHEMATICAL MODELS
MINUTES LIVING RADIOISOTOPES
NUCLEAR MODELS
NUCLEI
ODD-EVEN NUCLEI
PARTICLE PROPERTIES
RADIOISOTOPES
SECONDS LIVING RADIOISOTOPES
SPECTRA
651713* - Nuclear Properties & Reactions
A=90-149
Theoretical- Energy Levels & Transitions- (-1987)