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Bouncing Scenario in the $f(T)$ Modified Gravity Model with Dynamical System Analysis

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arxiv 2410.04062 v2 pith:FQS7HL3X submitted 2024-10-05 gr-qc hep-th

classification gr-qchep-th
keywords bouncebouncinggravitymodifiedsystemanalysiscosmologydynamical
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abstract

In this work, we study nonsingular bouncing cosmology in quadratic modified teleparallel gravity $f(T)=T+\beta T^{2}$ within a flat FLRW background. Using dimensionless variables, we derive modified Friedmann equations and reformulate the dynamics as a 2D autonomous system. Phase-space analysis identifies saddle, unstable, and stable critical points, with a scalar field-dominated late-time attractor under specific potential conditions. A genuine nonsingular bounce is realized via a regular scale factor, finite and positive throughout, with Hubble parameter satisfying $H(t_b)=0$, $\dot{H}(t_b)>0$, ensuring a smooth transition from contraction to expansion without singularity. The torsion scalar, effective energy density, and geometry remain finite. The deceleration and effective equation of state parameters show a temporary phantom-like regime near the bounce, violating the null energy condition as required. The reconstructed bounce aligns with the dynamical system's qualitative structure, asymptotically approaching a matter-dominated saddle while avoiding unstable stiff-matter solutions. Our results confirm that quadratic $f(T)$ gravity offers a self-consistent and viable framework for regular bouncing cosmology.

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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. Higher-Order Analytical Expansion of Thawing Dark Energy with an Exponential Potential

    astro-ph.CO 2026-08 conditional novelty 6.0 of 10

    For exponential-potential quintessence, a new fourth-order analytic correction, including a background expansion correction, improves the predicted dark energy equation of state compared with the leading-order thawing...

  2. Cosmology with Distinct Functions $f$ of the Non-metricity Scalar $Q$ : A Dynamical System Approach

    gr-qc 2025-06 reject novelty 3.0 of 10

    A fixed-point stability catalog for six f(Q) gravity models is presented, but the catalog tables contradict the paper's own equations.

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