arXiv:hep-ph/9312282·v1·High Energy Physics — Phenomenology
Gaugino Condensation as the Origin of Primordial Fluctuations
Abstract
I present a model for inflation based on the gaugino-dilaton dynamics of supersymmetry breaking. The inflaton is the dimension--1 scalar field related to the gaugino condensate via Recent work in this area is used to obtain two significant results: (1) Scalar density fluctuations at second horizon crossing are generated on scale with amplitude \[ \drr=A\cdot \ 10^3\cdot\ \left(\frac{m_{SUSY}}{m_{Pl}}\right)^{\half}\ \left(\frac{\lambda}{100\ \mbox{Mpc}}\right)^{0.03}\ \ , \] where is a constant which depends on (unknown) details of gaugino-dilaton dynamics in the strong-coupling phase. Agreement with COBE results is obtained if \ (2) Due to mixing with hidden sector glueballs, the dilaton mass is large and reheating takes place at This {\em necessitates} that the presently observed baryon asymmetry be generated at a cosmic temperature below 1 TeV.
Comments: 11 pages, plain LaTex, report #NUB-3082/93-Th