Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8208874 | Applied Radiation and Isotopes | 2018 | 4 Pages |
Abstract
We have been testing the theory used to calculate internal-conversion coefficients (ICCs) by making a series of measurements of αK values with precision better than ±2%. So far we have measured E3 transitions in three nuclei, 103Rh, 111Cd and 134Cs; and M4 transitions in six nuclei, 119Sn, 125Te, 127Te, 137Ba, 193Ir and 197Pt. Together, these span a wide range of A and Z values. In all cases, the results strongly favor Dirac-Fock calculations in which the final-state electron wave function has been computed in an atomic field that includes the vacancy created by the internal-conversion process.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Radiation
Authors
J.C. Hardy, N. Nica, V.E. Iacob, M.B. Trzhaskovskaya,