English

More about Neutron Majorana mass from Exotic Instantons: an alternative mechanism in Low-Scale String theory

High Energy Physics - Phenomenology 2016-06-22 v5

Abstract

We discuss an alternative for Baryon-violating six quarks transitions, in the contest of low scale string theory. In particular, with MS=10÷103TeVM_{S}=10\div 10^{3}\rm TeV, such a transition can be mediated by two color-triplets,through a quartic coupling with down-quarks,generated by exotic instantons, in a calculable and controllable way. We show how FCNCs limits on color-triplet massare well compatible with nnˉn-\bar{n} oscillation ones. If a nnˉn-\bar{n} transition were found, this would be an indirect hint for our model. This would strongly motivate researches of direct channels in proton-proton colliders. In fact, our model can be directly tested in a experimentally challenging 100÷1000TeV100\div 1000\, \rm TeV proton-proton collider, searching for our desired color-triplet states and an evidence for exotic instantons resonances, in addition to stringy Regge resonances, anomalous ZZ'-bosons and gauged megaxion. In particular, our scenario can be related to the 750GeV750\, \rm GeV diphoton hint identifying it with the gauged megaxion dual to the BB-field. On the other hand, this scenario is compatible with TeV-ish color triplets visible at LHC and with 1÷10TeV1\div 10\, \rm TeV- string scale, {\it i.e} stringy resonances at LHC.

Keywords

Cite

@article{arxiv.1504.06799,
  title  = {More about Neutron Majorana mass from Exotic Instantons: an alternative mechanism in Low-Scale String theory},
  author = {Andrea Addazi},
  journal= {arXiv preprint arXiv:1504.06799},
  year   = {2016}
}

Comments

Version accepted by Mod.Phys.Lett.A