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arxiv: astro-ph/0601299 · v1 · submitted 2006-01-13 · 🌌 astro-ph · gr-qc· hep-ph

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Big bang nucleosynthesis constraints on scalar-tensor theories of gravity

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classification 🌌 astro-ph gr-qchep-ph
keywords considerevolutionfieldgravitymatterscalarscalar-tensortheories
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We investigate BBN in scalar-tensor theories of gravity with arbitrary matter couplings and self-interaction potentials. We first consider the case of a massless dilaton with a quadratic coupling to matter. We perform a full numerical integration of the evolution of the scalar field and compute the resulting light element abundances. We demonstrate in detail the importance of particle mass thresholds on the evolution of the scalar field in a radiation dominated universe. We also consider the simplest extension of this model including a cosmological constant in either the Jordan or Einstein frame.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. The Confrontation between General Relativity and Experiment

    gr-qc 2014-03 accept novelty 2.0

    Experiments confirm general relativity to high precision in weak-field and strong-field regimes, with gravitational wave damping matching predictions to better than 0.5 percent.