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Back Reaction of Cosmological Perturbations and the Cosmological Constant Problem

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arxiv hep-th/0210165 v1 pith:O2J7AOJM submitted 2002-10-17 hep-th astro-phgr-qchep-ph

classification hep-thastro-phgr-qchep-ph
keywords cosmologicalback-reactionbackgroundeffectconstantinfraredmodescontributions
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abstract

The presence of cosmological fluctuations influences the background cosmology in which the perturbations evolve. This back-reaction arises as a second order effect in the cosmological perturbation expansion. The effect is cumulative in the sense that all fluctuation modes contribute to the change in the background geometry, and as a consequence the back-reaction effect can be large even if the amplitude of the fluctuation spectrum is small. We review two approaches used to quantify back-reaction. In the first approach, the effect of the fluctuations on the background is expressed in terms of an effective energy-momentum tensor. We show that in the context of an inflationary background cosmology, the long wavelength contributions to the effective energy-momentum tensor take the form of a negative cosmological constant, whose absolute value increases as a function of time since the phase space of infrared modes is increasing. This then leads to the speculation that gravitational back-reaction may lead to a dynamical cancellation mechanism for a bare cosmological constant, and yield a scaling fixed point in the asymptotic future in which the remnant cosmological constant satisfies $\Omega_{\Lambda} \sim 1$. We then discuss how infrared modes effect local observables (as opposed to mathematical background quantities) and find that the leading infrared back-reaction contributions cancel in single field inflationary models. However, we expect non-trivial back-reaction of infrared modes in models with more than one matter field.

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Cited by 2 Pith papers

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

  1. Evolving Dark Energy from the Back-Reaction of Cosmological Perturbations

    gr-qc 2026-07 conditional novelty 6.0 of 10

    Back-reaction of cosmological inhomogeneities can make an effective dark energy with a time-dependent equation of state and no phantom crossing, even for a global average.

  2. Quadratic effective energy--momentum tensor on uniform-density hypersurfaces during slow-roll inflation

    gr-qc 2026-08 conditional novelty 5.0 of 10

    The uniform-density gauge 2EMT matches the comoving gauge in the strict infrared, separates at finite gradient order, and acquires a 1/epsilon and 1/sigma_2^2 enhancement in the ultraviolet from the slowly evolving de...

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