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Quintessence: an analytical study, with theoretical and observational applications

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arxiv 2410.17182 v2 pith:UUX4FTZR submitted 2024-10-22 hep-th astro-ph.COgr-qchep-ph

classification hep-thastro-ph.COgr-qchep-ph
keywords varphiphaseanalyticmatterscalaranalyticallycosmologicaldark
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abstract

We focus on minimally coupled (multi)field quintessence models, of thawing type, and their realistic solutions. In a model-independent manner, we describe analytically these cosmological solutions throughout the universe history. Starting with a kination - radiation domination phase, we obtain an upper bound on the scalar potential to guarantee an early kination: $V(\varphi) \ll e^{-\sqrt{6} \varphi}$. Turning to the radiation - matter phase, we obtain analytic expressions for the scale factor $a(t)$ (not $t(a)$) and the scalar fields $\varphi^i(t)$ (usually neglected). These allow us to evaluate analytically the freezing of scalar fields, typically $\Delta \varphi \lesssim 10^{-2}$, as well as the transition moment of the dark energy equation of state parameter $w_{\varphi}$ from $+1$ to $-1$, with excellent agreement to the numerics. We comment on this freezing in view of string theory model building, and of some cosmological events. Turning to the latest phase of matter - dark energy domination, we show that the (multi)field displacement is sub-Planckian: $\Delta \varphi \leq 1$. We also provide for that phase analytic expressions for $\int (w_{\varphi}+1)\, d N$ in terms of matter evolution; we relate those to observational targets that we propose. Using finally the CPL parametrisation, while discussing a phantom behaviour, we derive analytic bounds on $w_0$ and $w_a$.

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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. Examining Quintessence Models with DESI Data

    astro-ph.CO 2025-05 conditional novelty 6.0 of 10

    NEC-obeying hilltop and exponential quintessence models give at most marginal improvement over the cosmological constant against DESI 2024 data, and the prominent k=10 hilltop 'excellent mimic' claim is an artifact of...

  2. Fibre Inflation Meets Quintessence: Implications of Perturbative Stabilisation

    hep-th 2025-11 reject novelty 5.0 of 10

    Adding a base-modulus redefinition to fibre inflation in perturbative LVS shifts (ns, r) into ACT-allowed territory and yields an axion quintessence companion.

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