By H. Behrens, J. Jänecke (auth.), H. Schopper (eds.)
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Extra info for Numerical Tables for Beta-Decay and Electron Capture
The p-decay functions, which contain the effect of the nuclear charge and the influence of screening from the atomic electron cloud, were obtained by solving the Dirac equation with a potential which corresponds to an extended uniform nuclear charge distribution and an atomic electron charge distribution of opposite sign outside the nucleus. The methods and computer programs employed in the present work are very similar to those developed by B~~HRING. A detailed description of this method is given in ref.
9805 ! 7754 y12 $12 7m 412 24 BehrenslJhnecke Ref. p. 3151 3 Description of the tables including the calculation methods Table III In table III the ratios of the screened (with asterisk) to the unscreened (without asterisk) functions listed in table II are given (except for ils and A,). The p-decay functions, which contain the effect of the nuclear charge and the influence of screening from the atomic electron cloud, were obtained by solving the Dirac equation with a potential which corresponds to an extended uniform nuclear charge distribution and an atomic electron charge distribution of opposite sign outside the nucleus.
Relations between electron momenta, total energies, kinetic energies and B e-values used in the following tables Table II. Unscreened p-decay Coulomb functions Table III. Ratio of screened to unscreened p-decay Coulomb functions Table IV. Integrated statistical factor Diagrams I and II. Integrated Fermi-function divided by the integrated statistical factor for /3-- and /3+-decay, respectively Diagrams III and IV. Screening corrections to the integrated Fermi-function for p-- and p+-decay, respectively Table V.