B(E2) Evaluation for 0+ to 2+ Transitions in Even-Even Nuclei
arXiv:1302.6881 · doi:10.1016/j.nds.2014.07.021
Abstract
A collaborative study by Brookhaven-McMaster-Central Michigan is underway to evaluate B(E2) for 0 2 transitions. This work is a continuation of a previous USNDP evaluation and has been motivated by a large number of recent measurements and nuclear theory developments. It includes an extended compilation, data evaluation procedures and shell model calculations. The subset of B(E2) recommended values for nuclei of relevance to the double-beta decay problem is presented, and evaluation policies of experimental data and systematics are discussed. Future plans for completion of the B(E2;0 2) evaluation project are also described.
3 pages, 2 tables, 2 figures
References in corpus (4)
- The Nuclear Science References (NSR) Database and Web Retrieval System
- Nuclear Science References Database
- An Update of B(E2) Evaluation for 0+1 -> 2+1 Transitions in Even-Even Nuclei near N~Z~28
- Evaluation of the resonance enhancement effect in neutrinoless double-electron capture in 152Gd, 164Er and 180W atoms
Cited by in corpus (14)
- Tables of E2 Transition Probabilities from the first States in Even-Even Nuclei
- Shell model predictions for Sn double-beta decay
- Nuclear Science References Database
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- Inverse-kinematics proton scattering from S, P and the collapse of the major shell closure
- Hexadecapole strength in the rare isotopes Kr
- Investigation of octupole collectivity near the shape-transitional point
- The effect of initial nuclear deformation on dielectron photoproduction in hadronic heavy-ion collisions
- New limit for the half-life of double beta decay of Zr to the first excited state of Mo
- Landscape of nuclear deformation softness with spherical quasi-particle random phase approximation
- Proton removal from Br to Se at intermediate energies
- Calculated Inter-band B(E2)'s in the p-f Shell
- Investigation of Nuclear Structures of Ne Isotopes by Nuclear Shell Model
- Level Densities from 0-30 MeV