Quenching of spin-flip quadrupole transitions
AbstractAbstract
[en] An increasing amount of experimental data indicates that spin-flip quadrupole transitions exhibit quenching effects similar to those reported earlier in (p,n) reactions involving l = 0 and l = 1 transitions. We present here two model calculations suggesting that the E2 spin-flip transitions are more affected than their M1 and M3 counterparts by the tensor and spin-orbit components of the nuclear force and should exhibit the largest quenching. We also review the experimental evidence corroborating our observations
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ANGULAR MOMENTUM, BARYON REACTIONS, BARYONS, BOSON-EXCHANGE MODELS, COUPLING, ELEMENTARY PARTICLES, ENERGY-LEVEL TRANSITIONS, FERMIONS, HADRON REACTIONS, HADRONS, INTERMEDIATE COUPLING, MATHEMATICAL MODELS, MULTIPOLE TRANSITIONS, NUCLEAR MODELS, NUCLEAR REACTIONS, NUCLEON REACTIONS, NUCLEONS, PARTICLE MODELS, PARTICLE PROPERTIES, PERIPHERAL MODELS
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