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Minimally Modified Gravity fitting Planck data better than $\Lambda$CDM

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arxiv 2005.13972 v2 pith:DXK4UK2M submitted 2020-05-28 astro-ph.CO gr-qchep-th

classification astro-ph.COgr-qchep-th
keywords datagravitytheoriesbetterexamplefunctionlambdamathcal
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abstract

We study the phenomenology of a class of minimally modified gravity theories called $f(\mathcal{H})$ theories, in which the usual general relativistic Hamiltonian constraint is replaced by a free function of it. After reviewing the construction of the theory and a consistent matter coupling, we analyze the dynamics of cosmology at the levels of both background and perturbations, and present a concrete example of the theory with a $3$-parameter family of the function $f$. Finally, we compare this example model to Planck data as well as some later-time probes, showing that such a realization of $f(\mathcal{H})$ theories fits the data significantly better than the standard $\Lambda$CDM model, in particular by modifying gravity at intermediate redshifts, $z\simeq743$.

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  1. Minimally modified gravity with Laplacian auxiliary constraints and an inflationary realization

    astro-ph.CO 2026-07 conditional novelty 6.0 of 10

    A modified gravity with Laplacian auxiliary constraints removes undetermined multipliers and predicts inflation observables, requiring superluminal tensor speed to fit current bounds.

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