Tachyon inflation with steep potentials

Aug 19, 2015
13 pages
Published in:
  • Phys.Rev.D 95 (2017) 10, 103506
  • Published: May 12, 2017
e-Print:

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Abstract: (APS)
Within the framework of tachyon inflation, we consider different steep potentials and check their viability in light of the Planck 2015 data. We see that in this scenario, the inverse power-law potential V(ϕ)=V0(ϕ/ϕ0)-n with n=2 leads to the power-law inflation with the scale factor a(t)∝tq where q>1, while with n<2, it gives rise to the intermediate inflation with the scale factor a(t)∝exp(Atf) where A>0 and 02 can be compatible with the 95% CL region of Planck 2015 TT, TE, EE+lowP data. We further conclude that the exponential potential V(ϕ)=V0e-ϕ/ϕ0, the inverse cosh potential V(ϕ)=V0/cosh(ϕ/ϕ0), and the mutated exponential potential V(ϕ)=V0[1+(n-1)-(n-1)(ϕ/ϕ0)n]e-ϕ/ϕ0 with n=4, can be consistent with the 95% CL region of Planck 2015 TT, TE, EE+lowP data. Moreover, using the r-ns constraints on the model parameters, we also estimate the running of the scalar spectral index dns/dlnk and the local non-Gaussianity parameter fNLlocal. We find that the lower and upper bounds evaluated for these observables are compatible with the Planck 2015 results.
Note:
  • 13 pages, 1 figure
  • inflation: tachyon
  • inflation: model
  • potential: Higgs
  • Planck
  • quintessence
  • dissipation