English

Lopsided texture compatible with thermal leptogenesis in partially composite Pati--Salam unification

High Energy Physics - Phenomenology 2019-08-29 v2

Abstract

In this paper, we consider a lopsided flavor texture compatible with thermal leptogenesis in partially composite Pati--Salam unification. The Davidson--Ibarra bound MνR1109M_{\nu R1} \gtrsim 10^9 GeV for the successful thermal leptogenesis can be recast to the Froggatt--Nielsen (FN) charge of the lopsided texture. We found the FN charge nν1n_{\nu1} of the lightest right-handed neutrino νR1\nu_{R1} can not be larger than a upper bound, nν14.5n_{\nu1} \lesssim 4.5. From the viewpoint of unification, the FN charges of the neutrinos nνin_{\nu i} should be the same to that of other SM fermions. Then, two cases nνi=nqi=(3,2,0)n_{\nu i} = n_{qi} = (3,2,0) and nνi=nli=(n+1,n,n) n_{\nu i} = n_{l i} = (n+1,n,n) are considered. Observations of PS model shows that the case of n=0n=0, nli=ndi=(1,0,0)n_{li} = n_{di} = (1,0,0) will be the simplest realization. To decrease the FN charges of these fermions from the GUT invariant FN charges nqi=(3,2,0)n_{qi} = (3,2,0), we utilize the partial compositeness. In this picture, the hierarchies of Yukawa matrices are a consequence of mixings between massless chiral fermions fL,fRf_{L}, f'_{R} and massive vector fermions FL,R,FL,RF_{L,R}, F'_{L,R}. This is induced by the linear mixing terms λffˉLFR\lambda^{f} \bar f_{L} F_{R} and λfFˉLfR\lambda^{f'} \bar F'_{L} f'_{R}. As a result of the partial compositeness, the decreases of FN charges require fine-tunings between mass and Yukawa matrices either for the increases of λf,f\lambda^{f, f'} or for the decreases of MF,FM_{F,F'}. Therefore, the case for n=2n=2 and ndi=nli=(3,2,2)n_{di} = n_{li} = (3,2,2), which requires only increases of FN charges will be appropriate to build a natural model.

Keywords

Cite

@article{arxiv.1904.02881,
  title  = {Lopsided texture compatible with thermal leptogenesis in partially composite Pati--Salam unification},
  author = {Masaki J. S. Yang},
  journal= {arXiv preprint arXiv:1904.02881},
  year   = {2019}
}

Comments

17 pages, 4 tables, substantially modified from the first version