4.7 Article

Chameleon dark energy models with characteristic signatures

期刊

PHYSICAL REVIEW D
卷 82, 期 12, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.82.124006

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资金

  1. JSPS
  2. Research Council of Norway FRINAT [197251/V30]
  3. Research Council of Norway [202629V11]
  4. JSPS [30318802]
  5. [CERN/FP/109381/2009]
  6. [PTDC/FIS/102742/2008]
  7. [21111006]

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In chameleon dark energy models, local gravity constraints tend to rule out parameters in which observable cosmological signatures can be found. We study viable chameleon potentials consistent with a number of recent observational and experimental bounds. A novel chameleon field potential, motivated by f(R) gravity, is constructed where observable cosmological signatures are present both at the background evolution and in the growth rate of the perturbations. We study the evolution of matter density perturbations on low redshifts for this potential and show that the growth index today gamma(0) can have significant dispersion on scales relevant for large scale structures. The values of gamma(0) can be even smaller than 0.2 with large variations of gamma on very low redshifts for the model parameters constrained by local gravity tests. This gives a possibility to clearly distinguish these chameleon models from the Lambda-cold-dark-matter (Lambda CDM) model in future high-precision observations.

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