English

Compact Star in General $F(R)$ Gravity: Inevitable Degeneracy Problem and Non-Integer Power Correction

General Relativity and Quantum Cosmology 2022-10-18 v4 High Energy Physics - Theory

Abstract

We investigate a compact star in the general F(R)F(R) gravity. Developing a novel formulation in the spherically symmetric and static space-time with the matter, we confirm that an arbitrary relation between the mass MM and the radius RsR_s of the compact star can be realized by adjusting the functional form of F(R)F(R). Such a degeneracy with a choice of the equation of state (EOS) suggests that only mass-radius relation is insufficient to constrain the F(R)F(R) gravity. Furthermore, by solving the differential equation for dF(R)dRR=R(r)\left. \frac{dF(R)}{dR}\right|_{R=R(r)} near and inside the surface of the compact star with the polytropic EOS, the boundary condition demands a weak curvature correction to the Einstein gravity could be non-integer power of the scalar curvature, which gives a stringent constraint on the functional form of F(R)F\left(R\right). This consequence follows that the equation of motion in F(R)F(R) gravity includes the fourth-order derivative of metric, and thus, it is applicable to general F(R)F(R) models.

Keywords

Cite

@article{arxiv.2111.02660,
  title  = {Compact Star in General $F(R)$ Gravity: Inevitable Degeneracy Problem and Non-Integer Power Correction},
  author = {Kota Numajiri and Taishi Katsuragawa and Shin'ichi Nojiri},
  journal= {arXiv preprint arXiv:2111.02660},
  year   = {2022}
}

Comments

14 pages. Typos are corrected

R2 v1 2026-06-24T07:25:36.660Z