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Inflation with teleparallelism: Can torsion generate primordial fluctuations without local Lorentz symmetry?

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arxiv 1609.04959 v1 pith:RY553UOV submitted 2016-09-16 gr-qc

Inflation with teleparallelism: Can torsion generate primordial fluctuations without local Lorentz symmetry?

classification gr-qc
keywords fieldlocallorentzprimordialtorsionasymmetrybackgroundequations
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Arbitrary generalization to the teleparallel equivalent of general relativity loses local Lorentz invariance to reparametrize the orthonormal coordinate system and gives rise to asymmetry field equations. We investigate consequences of local Lorentz violation to primordial fluctuations in extended single field inflationary models based on the scalar-tensor formulation of the torsion scalar $T$ that effectively includes $f(T)$ gravity as a special case. We show that despite some asymmetry part of the field equations are removed in a spatially homogeneous and isotropic cosmic background, no subhorizon scalar-perturbation mode can survive by the time of horizon crossing. As a result, any scalar field mediated in torsion cannot generate enough primordial density inhomogeneity alone, even if it brings some de Sitter background solutions in generalized teleparallel gravity.

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  1. Higgs-like inflation in scalar-torsion $f(T,\phi)$ gravity in light of ACT-SPT-DESI constraints

    gr-qc 2025-12 conditional novelty 5.0

    Higgs-like inflation in f(T,φ) torsion gravity can accommodate the ACT/DESI upward shift in the scalar spectral index while predicting a tensor-to-scalar ratio r≈0.01–0.04.