Pith. sign in

Robustness of predicted CMB fluctuations in Cartan $F(R)$ gravity

1 Pith paper cite this work. Polarity classification is still indexing.

1 Pith paper citing it
abstract

The cosmology of the $F(R)$ gravity rebuilding by the Cartan formalism is investigated. This is called Cartan $F(R)$ gravity. The well-known $F(R)$ gravity has been introduced to extend the standard cosmology, e.g. to explain the cosmological accelerated expansion as the inflation. Cartan $F(R)$ gravity is based on the Riemann-Cartan geometry. The curvature $R$ can separate to two parts, one is derived from the Levi-Civita connection and the other from the torsion. Assuming the matter-independent spin connection, we have successfully rewritten the action of Cartan $F(R)$ gravity into the Einstein-Hilbert action and a scalar field with canonical kinetic and potential terms without any conformal transformations. This feature simplifies building and analysis of new model of inflation. In this paper, we study two models, the power-law model and logarithmic model, and evaluate fluctuations in the cosmological microwave background (CMB) radiation. We found the robustness of CMB fluctuation by the analytical computation and confirm this feature by the numerical calculation.

citation-role summary

background 1

citation-polarity summary

fields

gr-qc 1

years

2024 1

verdicts

REJECT 1

roles

background 1

polarities

unclear 1

representative citing papers

Neutron star in Logarithmic model of Cartan $F(R)$ gravity

gr-qc · 2024-12-04 · reject · novelty 6.0

In Cartan F(R) gravity with a logarithmic potential, a scalar field can raise the minimum neutron star mass to near one solar mass, but only for hand-tuned parameters that imply a huge vacuum energy.

citing papers explorer

Showing 1 of 1 citing paper.

  • Neutron star in Logarithmic model of Cartan $F(R)$ gravity gr-qc · 2024-12-04 · reject · none · ref 32 · internal anchor

    In Cartan F(R) gravity with a logarithmic potential, a scalar field can raise the minimum neutron star mass to near one solar mass, but only for hand-tuned parameters that imply a huge vacuum energy.