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arxiv: 1503.02832 · v2 · pith:6HBAC4MTnew · submitted 2015-03-10 · 🌀 gr-qc · astro-ph.CO· hep-th

Transition redshift in f(T) cosmology and observational constraints

classification 🌀 gr-qc astro-ph.COhep-th
keywords constraintstransitioncosmologyboundsdataextractobservationalobtain
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We extract constraints on the transition redshift $z_{tr}$, determining the onset of cosmic acceleration, predicted by an effective cosmographic construction, in the framework of $f(T)$ gravity. In particular, employing cosmography we obtain bounds on the viable $f(T)$ forms and their derivatives. Since this procedure is model independent, as long as the scalar curvature is fixed, we are able to determine intervals for $z_{tr}$. In this way we guarantee that the Solar-System constraints are preserved and moreover we extract bounds on the transition time and the free parameters of the scenario. We find that the transition redshifts predicted by $f(T)$ cosmology, although compatible with the standard $\Lambda$CDM predictions, are slightly smaller. Finally, in order to obtain observational constraints on $f(T)$ cosmology, we perform a Monte Carlo fitting using supernova data, involving the most recent union 2.1 data set.

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  1. ACT-Era Constraints on Single-Field Inflation in $f(T)$ Teleparallel Gravity

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    Modest positive δ in f(T) teleparallel gravity suppresses r while keeping ns near its slow-roll value, restoring viability for sub-quadratic monomials and hilltop models disfavored in GR under ACT constraints.