Abstract

A systematic theory of weak interactions is presented on the assumption that the primary weak interaction is the -one between the intermediate boson and the weak currents. Assuming that· the regularities of asymmetry parameters of hyperon nonleptonic decays reflect a certain fundamental law, we consider the doublet spin to be of primary importance. Properties of currents assumed in the present work are the following: Vectorpart of the strangeness conserving current is conserved; there exist two kinds of strangeness violating currents, scalar and vector in the doublet spin space respectively, and both of them are of r p-type, i. e. do not include r pra-type interaction. It is assumed that the primary weak interactions conserve the doublet spin, the K-spin and the strangeness. Main conclusions of our theory <lre the following: (a) There exist two sets of inter­ mediate bosons, each set consisting of the particles with +, - and 0 charges and their antiparticles (different from particles); (b) intermediate bosons have dual properties, like schizon, concerning the doublet spin, the K-spin and· the strangeness; (c) transitions with 1.181~2 do not occur in the first order of weak interactions; (d) isospin selection rule, I.1TI=1/2, does hold for nonleptonic decays. Asymmetry parameters have the following

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