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To curve, or not to curve: Is curvature-assisted quintessence observationally viable?

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arxiv 2406.09212 v3 pith:EPFEM5JS submitted 2024-06-13 hep-th astro-ph.COgr-qchep-ph

To curve, or not to curve: Is curvature-assisted quintessence observationally viable?

classification hep-th astro-ph.COgr-qchep-ph
keywords viableacceleratedcosmicexpansionobservationallycosmologicalcurvefixed
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Single-field models of accelerated expansion with nearly flat potentials, despite being able to provide observationally viable explanations for the early-time cosmic inflation and the late-time cosmic acceleration, are in strong tension with string theory evidence and the associated de Sitter swampland constraints. It has recently been argued that in an open universe, where the spatial curvature is negative (i.e., with $\Omega_k>0$), a new stable fixed point arises, which may lead to viable single-field-based accelerated expansion with an arbitrarily steep potential. Here, we show, through a dynamical systems analysis and a Bayesian statistical inference of cosmological parameters, that the additional cosmological solutions based on the new fixed point do not render steep-potential, single-field, accelerated expansion observationally viable. We mainly focus on quintessence models of dark energy, but we also argue that a similar conclusion can be drawn for cosmic inflation.

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Cited by 2 Pith papers

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  1. Cosmological perturbations and clustering mechanisms in multifield dark energy

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  2. Instabilities in scale-separated Casimir vacua

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    Casimir-stabilized AdS vacua with parametric scale separation in supergravity exhibit perturbative and non-perturbative instabilities under deformations.