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arXiv:1810.04802·v1·Nuclear Experiment

Precise measurement of and for the 39.8-keV 3 transition in Rh: Test of internal-conversion theory

N. Nica · J.C. Hardy · V.E. Iacob · V. Horvat · H.I. Park · T.A. Werke · K.J. Glennon · C.M. Folden III · V.I. Sabla · J.B. Bryant · X.K. James · M.B. Trzhaskovskaya

Abstract

Neutron-activated sources of Ru and Pd both share the isomeric first-excited state in Rh as a daughter product. From independent measurements of both decays, we have measured the -shell and total internal conversion coefficients, and , for the 39.8-keV 3 transition, which de-excites that state in Rh, to be 141.1(23) and 1428(13), respectively. When compared with Dirac-Fock calculations, our new results disagree with the version of the theory that ignores the -shell atomic vacancy, which is consistent with our conclusion drawn from a series of measurements on high multipolarity transitions in nuclei with higher . Calculations that include the atomic vacancy indicate that the transition actually has a small 4 component with mixing ratio = 0.023(5).

Comments: 12 pages, 6 figures. arXiv admin note: text overlap with arXiv:1704.03074, arXiv:1702.07668

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