Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D, Particles, fields, gravitation, and cosmology · 2008 · 233 citations · 87 references
EngineeringGeneral RelativityReconstruction TechniqueInflation (Cosmology)CosmologyPrimordial Gravitational WaveQuantum Field TheoryUniverse HistoryQuantum CosmologyUniverse Expansion HistoryGravitation TheoryScalar FieldEarly UniverseCanonical Scalar Fields
We consider the reconstruction technique in theories with a single or multiple (phantom and/or canonical) scalar fields. With the help of several examples, it is demonstrated explicitly that the universe expansion history, unifying early-time inflation and late-time acceleration, can be realized in scalar-tensor gravity. This is generalized to the theory of a scalar field coupled nonminimally to the curvature and to a Brans-Dicke-like theory. Different examples of unification of inflation with cosmic acceleration, in which de Sitter, phantom, and quintessence type fields play the fundamental role---in different combinations---are worked out. Specifically, the frame dependence and stability properties of de Sitter space scalar field theory are studied. Finally, for two-scalar theories, the late-time acceleration and early-time inflation epochs are successfully reconstructed, in realistic situations in which the more and more stringent observational bounds are satisfied, using the freedom of choice of the scalar field potential, and of the kinetic factor.
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Edmund J. Copeland, M. Sami, Shinji Tsujikawa · International Journal of Modern Physics D · 2006 · 5.9K citations · Full text
Late-time cosmology in a (phantom) scalar-tensor theory: Dark energy and the cosmic speed-up
E. Elizalde, Shin’ichi Nojiri, Sergei D. Odintsov · Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D, Particles, fields, gravitation, and cosmology · 2004 · 934 citations · Full text