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Remarks on the unified model of elementary particles

Ziro Maki, +2 more
- 01 Nov 1962 - 
- Vol. 28, Iss: 5, pp 870-880
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TLDR
In this article, a particle mixture theory of neutrino is proposed assuming the existence of two kinds neutrinos, and a possible unified model of elementary particles is constructed by generalizing the Sakata-Nagoya model, which gives a natural explanation of smallness of leptonic decay rate of hyperons as well as subtle difference of G_ν's between µ-e and β-decay.
Abstract
A particle mixture theory of neutrino is proposed assuming the existence of two kinds of neutrinos. Based on the neutrino-mixture theory, a possible unified model of elementary particles is constructed by generalizing the Sakata-Nagoya model. Our scheme gives a natural explanation of smallness of leptonic decay rate of hyperons as well as the subtle difference of G_ν's between µ-e and β-decay.

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Reactor measurement of θ 13 and its complementarity to long-baseline experiments

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Current unknowns in the three neutrino framework

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Cosmic Neutrino Pevatrons: A Brand New Pathway to Astronomy, Astrophysics, and Particle Physics

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Probing the seesaw mechanism with neutrino data and leptogenesis

TL;DR: In this article, the authors used the current low-energy neutrino data to understand the structure of the neutrinos mass matrix and found that successful baryogenesis via leptogenesis requires mass degeneracy and maximal mixing of N1 and N2.
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Quantum corrections to neutrino masses and mixing angles

TL;DR: In this paper, the authors discuss the effect of quantum corrections on the mixing angles of neutrino masses and mixing angles in the context of the single dimension 5 operator and renormalization group equations (RGE).
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