English

Discovery of Proton Decay: A Must for Theory, a Challenge for Experiment

High Energy Physics - Phenomenology 2014-11-17 v2 High Energy Physics - Theory

Abstract

It is noted that, but for one missing piece -- proton decay -- the evidence in support of grand unification is now strong. It includes: (i) the observed family-structure, (ii) the meeting of the gauge couplings, (iii) neutrino-oscillations, (iv) the intricate pattern of the masses and mixings of all fermions, including the neutrinos, and (v) the need for BLB-L as a generator, to implement baryogenesis. Taken together, these not only favor grand unification but in fact select out a particular route to such unification, based on the ideas of supersymmetry, SU(4)-color and left-right symmetry. Thus they point to the relevance of an effective string-unified G(224) or SO(10)-symmetry. A concrete proposal is presented, within a predictive SO(10)/G(224)-framework, that successfully describes the masses and mixings of all fermions, including the neutrinos - with eight predictions, all in agreement with observation. Within this framework, a systematic study of proton decay is carried out, which pays special attention to its dependence on the fermion masses, including the superheavy Majorana masses of the right-handed neutrinos. The study shows that a conservative upper limit on the proton lifetime is about (1/2 - 1)×1034\times10^{34} yrs, with νK+\overline{\nu}K^{+} being the dominant decay mode, and as a distinctive feature, μ+K0\mu^{+}K^{0} being prominent. This in turn strongly suggests that an improvement in the current sensitivity by a factor of five to ten (compared to SuperK) ought to reveal proton decay. Otherwise some promising and remarkably successful ideas on unification would suffer a major setback.

Keywords

Cite

@article{arxiv.hep-ph/0005095,
  title  = {Discovery of Proton Decay: A Must for Theory, a Challenge for Experiment},
  author = {Jogesh C. Pati},
  journal= {arXiv preprint arXiv:hep-ph/0005095},
  year   = {2014}
}

Comments

LaTex file 29 pages, no figures. Minor corrections