English

Self-reproduction in k-inflation

General Relativity and Quantum Cosmology 2009-11-11 v1 Astrophysics High Energy Physics - Theory

Abstract

We study cosmological self-reproduction in models of inflation driven by a scalar field ϕ\phi with a noncanonical kinetic term (kk-inflation). We develop a general criterion for the existence of attractors and establish conditions selecting a class of kk-inflation models that admit a unique attractor solution. We then consider quantum fluctuations on the attractor background. We show that the correlation length of the fluctuations is of order csH1c_{s}H^{-1}, where csc_{s} is the speed of sound. By computing the magnitude of field fluctuations, we determine the coefficients of Fokker-Planck equations describing the probability distribution of the spatially averaged field ϕ\phi. The field fluctuations are generally large in the inflationary attractor regime; hence, eternal self-reproduction is a generic feature of kk-inflation. This is established more formally by demonstrating the existence of stationary solutions of the relevant FP equations. We also show that there exists a (model-dependent) range ϕR<ϕ<ϕmax\phi_{R}<\phi<\phi_{\max} within which large fluctuations are likely to drive the field towards the upper boundary ϕ=ϕmax\phi=\phi_{\max}, where the semiclassical consideration breaks down. An exit from inflation into reheating without reaching ϕmax\phi_{\max} will occur almost surely (with probability 1) only if the initial value of ϕ\phi is below ϕR\phi_{R}. In this way, strong self-reproduction effects constrain models of kk-inflation.

Keywords

Cite

@article{arxiv.gr-qc/0608019,
  title  = {Self-reproduction in k-inflation},
  author = {Ferdinand Helmer and Sergei Winitzki},
  journal= {arXiv preprint arXiv:gr-qc/0608019},
  year   = {2009}
}

Comments

RevTeX 4, 17 pages, 1 figure

R2 v1 2026-07-22T12:45:56.385Z