Non-Abelian Gauge Family Symmetry in Rank 8 and 16 Grand Unified String Theories
A. A. Maslikov, I. A. Naumov, G. G. Volkov
Abstract
The one of the main points of the investigations in high energy physics is to study the next chain: a law of the quark and lepton mass spectra → the puzzles of the quark and lepton family mixing → a possible new family dynamics. The new family symmetry dynamics might be connected to the existence of some exotic gauge or matter fields or something yet. For this it will better to study the possibilities of the appearence this gauge symmetry in the framework of the Grand Unified String Theories. In the framework of four dimensional heterotic superstring with free fermions we investigate the rank eight Grand Unified String Theories (GUST) which contain the SU(3)H-gauge family symmetry. We explicitly construct GUST with gauge symmetry G = SU(5) × U(1)× (SU(3) × U(1))H and G = SO(10)× (SU(3) × U(1))H ⊂ SO(16) or E(6)× SU(3)H ⊂ E(8) in free complex fermion formulation. As the GUSTs originating from Kac-Moody algebras (KMA) contain only low-dimensional representations it is usually difficult to break the gauge symmetry. We solve this problem taking for the observable gauge symmetry the diagonal subgroup Gsym of rank 16 group G× G⊂ SO(16)× SO(16) or (E(6) × SU(3)H)2 ⊂ E(8)× E(8). We discuss the possible fermion matter and Higgs sectors in these models. In these GUST there has to exist "superweak" light chiral matter(mHf < MW). The understanding of quark and lepton mass spectra and family mixing leave a possibility for the existence of an unusually low mass breaking scale of the SU(3)H family gauge symmetry
Create a lesson
Related papers
Chiral soliton lattice in inhomogeneous magnetic fields
Tomas Brauner, Ramkumar Radhakrishnan
From the November Revolution toward the Millennium
Chris Quigg
An Axial UA(1)Lμ-Lτ: UV Completion and Experimental Searches
Rundong Fang, Jinhui Guo, Ming Li et al.
Hunting long-lived doubly charged scalars at the HL-LHC
Biplob Bhattacherjee, Rituparna Ghosh, Swagata Mukherjee et al.
Enigmatic properties of Ξ(1620) and Ξ(1690)
Taísa Veloso, K. P. Khemchandani, A. Martinez Torres et al.
Exploring Z/γ-mediated heavy FCNCs at the FCC-ee
Abhik Sarkar, Subhajit Kala, Amir Subba et al.