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Einstein and Jordan frames reconciled: a frame-invariant approach to scalar-tensor cosmology

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arxiv astro-ph/0604492 v2 pith:4NGOOD4B submitted 2006-04-24 astro-ph gr-qchep-phhep-th

classification astro-phgr-qchep-phhep-th
keywords framesframe-independentscalar-tensorapproachdifferenteinsteinjordanphysical
verification ladder T0 review T1 audit T2 compute T3 formal
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Scalar-Tensor theories of gravity can be formulated in different frames, most notably, the Einstein and the Jordan one. While some debate still persists in the literature on the physical status of the different frames, a frame transformation in Scalar-Tensor theories amounts to a local redefinition of the metric, and then should not affect physical results. We analyze the issue in a cosmological context. In particular, we define all the relevant observables (redshift, distances, cross-sections, ...) in terms of frame-independent quantities. Then, we give a frame-independent formulation of the Boltzmann equation, and outline its use in relevant examples such as particle freeze-out and the evolution of the CMB photon distribution function. Finally, we derive the gravitational equations for the frame-independent quantities at first order in perturbation theory. From a practical point of view, the present approach allows the simultaneous implementation of the good aspects of the two frames in a clear and straightforward way.

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Cited by 4 Pith papers

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  3. The Unknown Face of Scalar-Tensor Gravitational Theories

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  4. Conformal form-invariant parametrization of scalar-tensor gravity theories: A critical analysis

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    A critical review of conformal form-invariant parametrization in scalar-tensor theories, testing its novelty relative to existing frames and the universality of frame-invariant physical predictions.

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