English

Constraining scalar-Gauss-Bonnet Inflation by Reheating, Unitarity and PLANCK

General Relativity and Quantum Cosmology 2017-02-08 v3 High Energy Physics - Theory

Abstract

We revisit the inflationary dynamics in detail for theories with Gauss-Bonnet gravity coupled to scalar functions, in light of the Planck data. Considering the chaotic inflationary scenario, we constrain the parameters of two models involving inflaton-Gauss-Bonnet coupling by current Planck data. For non zero inflaton-Gauss-Bonnet coupling β\beta, an inflationary analysis provides us a big cosmologically viable region in the space of (m,β)(m,\beta), where mm is the mass of inflaton. However, we study further on constraining β\beta arising from reheating considerations and unitarity of tree-level amplitude involving we have studied the constraints on β\beta arising from reheating considerations and unitarity of tree level amplitude involving 22 graviton 2\rightarrow 2 graviton (hhhhh h\rightarrow hh) scattering. Our analysis, particularly on reheating significantly reduces the parameter space of (m,β)(m,\beta) for all models. he quadratic Gauss-Bonnet coupling parameter turns out to be more strongly constrained than that of the linear coupling. For the linear Gauss-Bonnet coupling function, we obtain β103\beta \lesssim 10^3, with the condition β(m/MP)2104\beta (m/M_P)^2 \simeq 10^{-4}. However, study of the Higgs inflation scenario in the presence of Gauss-Bonnet term turned out to be strongly disfavored.

Keywords

Cite

@article{arxiv.1606.00698,
  title  = {Constraining scalar-Gauss-Bonnet Inflation by Reheating, Unitarity and PLANCK},
  author = {Srijit Bhattacharjee and Debaprasad Maity and Rupak Mukherjee},
  journal= {arXiv preprint arXiv:1606.00698},
  year   = {2017}
}

Comments

22 pages, 12 Pdf figures; Modified version including updated analyses compatible with the latest observational data. Almost matches with the published version