English

An exact analytic spectrum of relic gravitational waves in an accelerating universe

Astrophysics 2008-11-29 v4

Abstract

An exact analytic calculation is presented for the spectrum of relic gravitational waves in the scenario of accelerating Universe ΩΛ+Ωm=1\Omega_{\Lambda}+\Omega_m = 1. The spectrum formula contains explicitly the parameters of acceleration, inflation, reheating, and the (tensor/scalar) ratio, so that it can be employed for a variety of cosmological models. We find that the spectrum depends on the behavior of the present accelerating expansion. The amplitude of gravitational waves for the model ΩΛ=0.65\Omega_{\Lambda}=0.65 is about 50\sim 50 % greater than that of the model ΩΛ=0.7\Omega_{\Lambda}=0.7, an effect accessible to the designed sensitivities of LIGO and LISA. The spectrum sensitively depends on the inflationary models with a(τ)τ1+βa(\tau) \propto |\tau|^{1+\beta}, and a larger β\beta yields a flatter spectrum, producing more power. The current LIGO results rule out the inflationary models of β1.8\beta \geq -1.8. The LIGO with its design sensitivity and the LISA will also be able to test the model of β=1.9\beta=-1.9. We also examine the constraints on the spectral energy density of relic gravitational waves. Both the LIGO bound and the nucleosynthesis bound point out that the model β=1.8\beta=-1.8 is ruled out, but the model β=2.0\beta=-2.0 is still alive. The exact analytic results also confirm the approximate spectrum and the numerical one in our previous work.

Keywords

Cite

@article{arxiv.astro-ph/0604456,
  title  = {An exact analytic spectrum of relic gravitational waves in an accelerating universe},
  author = {Yang Zhang and XinZhong Er and TianYang Xia and Wen Zhao and HaiXing Miao},
  journal= {arXiv preprint arXiv:astro-ph/0604456},
  year   = {2008}
}

Comments

27 pages, 14figures, minor typos corrected