The Universal Fermi Interaction

E. J. Konopinski and H. M. Mahmoud
Phys. Rev. 92, 1045 – Published 15 November 1953
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Abstract

On the basis of the hypothesis that the same form of interaction acts among any spin-½ particles, it is interesting to apply the interaction law found for β decay to the muon processes. The application is beset by two types of ambiguity. The first is due to the uncertainty in measured values of coupling constants, and particularly their signs. The second arises from the various ways in which the correspondence between the particles of μ and β decay may be taken. Arguments are presented that the unique correspondence established if two like neutrinos are ejected in μ decay is the correct one.

It is argued that previous interpretations of the Universal Fermi Interaction have been unjustifiably broad. Only processes in which two normal particles (vs antiparticles) are annihilated, and two created, should be expected. The positive muon must be treated as the normal-particle (if the neutron, proton and negatron are) in order to avoid the expectation that muon capture by a proton may yield electrons, contrary to experimental facts. The conclusion that two like neutrinos are ejected in μ decay follows immediately.

  • Received 24 July 1953

DOI:https://doi.org/10.1103/PhysRev.92.1045

©1953 American Physical Society

Authors & Affiliations

E. J. Konopinski and H. M. Mahmoud

  • Physics Department, Indiana University, Bloomington, Indiana

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Issue

Vol. 92, Iss. 4 — November 1953

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