Muon-Capture and Photon-Absorption Calculations in a Configuration-Mixing Model for
- 20 October 1968
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 174 (4) , 1290-1303
- https://doi.org/10.1103/physrev.174.1290
Abstract
The utility of multiparticle, multihole configuration mixing as a mechanism for resolving certain theoretical-experimental discrepancies for muon capture and photodisintegration on is considered. An ground state containing a two-particle, two-hole (2p-2h) component is assumed. The usual particle-hole odd-parity states are amended to contain three-particle, three-hole configuration admixtures consistent with the choice of the more complicated ground state. The results of the calculations indicate that the configuration-mixing model can appreciably lower the partial muon-capture rates to the lowest , , and states. Moreover, a shift in the energy distribution of the transition strength, obtained in the model calculations, lowers the capture rate and photodisintegration cross section in and below the giant-resonance region. However, correction terms, arising mainly from → (2p-2h) allowed Gamow-Teller transitions, seem to preclude a lowering of the total capture rate.
Keywords
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