4.6 Article

Cosmological perturbations of self-accelerating universe in nonlinear massive gravity

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1475-7516/2012/03/006

关键词

modified gravity; primordial gravitational waves (theory); cosmological perturbation theory; dark energy theory

资金

  1. World Premier International Research Center Initiative (WPI Initiative), MEXT, Japan
  2. Japan-Russia Research Cooperative Program [17740134, 19GS0219, 21111006, 21540278]
  3. Grants-in-Aid for Scientific Research [21111006, 21540278, 20740125, 17740134] Funding Source: KAKEN

向作者/读者索取更多资源

We study cosmological perturbations of self-accelerating universe solutions in the recently proposed nonlinear theory of massive gravity, with general matter content. While the broken diffeomorphism invariance implies that there generically are 2 tensor, 2 vector and 2 scalar degrees of freedom in the gravity sector, we find that the scalar and vector degrees have vanishing kinetic terms and nonzero mass terms. Depending on their nonlinear behavior, this indicates either nondynamical nature of these degrees or strong couplings. Assuming the former, we integrate out the 2 vector and 2 scalar degrees of freedom. We then find that in the scalar and vector sectors, gauge-invariant variables constructed from metric and matter perturbations have exactly the same quadratic action as in general relativity. The difference from general relativity arises only in the tensor sector, where the graviton mass modifies the dispersion relation of gravitational waves, with a time-dependent effective mass. This may lead to modification of stochastic gravitational wave spectrum.

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