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CMB Scale Dependent Non-Gaussianity from Massive Gravity during Inflation

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arxiv 1701.05554 v2 pith:Z6WCU4OZ submitted 2017-01-19 astro-ph.CO hep-th

classification astro-ph.COhep-th
keywords modeinflationduringmassiveexistenceframemodelpreferred
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We consider a cosmological model in which the tensor mode becomes massive during inflation, and study the Cosmic Microwave Background (CMB) temperature and polarization bispectra arising from the mixing between the scalar mode and the massive tensor mode during inflation. The model assumes the existence of a preferred spatial frame during inflation. The local Lorentz invariance is already broken in cosmology due to the existence of a preferred rest frame. The existence of a preferred spatial frame further breaks the remaining local SO(3) invariance and in particular gives rise to a mass in the tensor mode. At linear perturbation level, we minimize our model so that the vector mode remains non-dynamical, while the scalar mode is the same as the one in single-field slow-roll inflation. At non-linear perturbation level, this inflationary massive graviton phase leads to a sizeable scalar-scalar-tensor coupling, much greater than the scalar-scalar-scalar one, as opposed to the conventional case. This scalar-scalar-tensor interaction imprints a scale dependent feature in the CMB temperature and polarization bispectra. Very intriguingly, we find a surprizing similarity between the predicted scale dependence and the scale-dependent non-Gaussianities at low multipoles hinted in the WMAP and Planck results.

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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. Stable Cosmology from Minimal Theory of Mass-Varying Massive Gravity

    gr-qc 2025-07 reject novelty 6.0 of 10

    MTMVMG is claimed to admit stable FLRW perturbations, with the mass-varying scalar as dark energy or inflaton, but stability inequalities are unverified and the phenomenology is fitted.

  2. CMB-S4 Science Case, Reference Design, and Project Plan

    astro-ph.IM 2019-07 unverdicted novelty 3.0 of 10

    Presents the science case, reference design, and project plan for the CMB-S4 ground-based CMB experiment.

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