arXiv:2608.08708·v1·High Energy Physics — Phenomenology
Sneutrino Tribrid Inflation in Flipped : Confronting ACT DR6 and Planck
Farishta Israr · Mansoor Ur Rehman · Saleh O. Allehabi
Abstract
We construct a realization of sneutrino tribrid inflation within the -symmetric flipped grand unified theory. A vector-like pair of matter multiplets, , provides a -flat inflaton direction along the right-handed sneutrino component, with an additional symmetry forbidding a direct inflaton mass term so that the leading inflationary interaction is a non-renormalizable Kähler-driven operator. Unlike previous studies, we treat the superpotential cutoff scale as independent of the reduced Planck mass, , substantially enlarging the viable parameter space. Confronting the model with the ACT DR6/Planck determination and the bound on the running of the spectral index, we identify broad regions of viable parameter space in which the flipped symmetry-breaking scale can approach the conventional GUT scale, , and the tensor-to-scalar ratio can reach observable values, , within reach of forthcoming CMB -mode experiments such as LiteBIRD and CMB-S4. We further study the post-inflationary dynamics, identifying the inflaton with the lightest right-handed sneutrino in a conventional type-I seesaw sector, whose out-of-equilibrium decay generates a lepton asymmetry that is converted into the observed baryon asymmetry via non-thermal leptogenesis and electroweak sphalerons, for a reheating temperature consistent with both successful leptogenesis and the gravitino constraint.
Comments: 18 pages, 8 figures, and 1 table