English

Energy conditions in $f(Q, L_m)$ gravity

Cosmology and Nongalactic Astrophysics 2025-04-08 v1 General Relativity and Quantum Cosmology

Abstract

We are experiencing a golden age of experimental cosmology, with exact and accurate observations being used to constrain various gravitational theories like never before. Alongside these advancements, energy conditions play a crucial theoretical role in evaluating and refining new proposals in gravitational physics. We investigate the energy conditions (WEC, NEC, DEC, and SEC) for two f(Q,Lm)f(Q, L_m) gravity models using the FLRW metric in a flat geometry. Model 1, f(Q,Lm)=αQ+2Lm+βf(Q, L_m) = -\alpha Q + 2L_m + \beta, features linear parameter dependence, satisfying most energy conditions while selectively violating the SEC to explain cosmic acceleration. The EoS parameter transitions between quintessence, a cosmological constant, and phantom energy, depending on α\alpha and β\beta. Model 2, f(Q,Lm)=αQ+λ(2Lm)2+βf(Q, L_m) = -\alpha Q + \lambda (2L_m)^2 + \beta, introduces nonlinearities, ensuring stronger SEC violations and capturing complex dynamics like dark energy transitions. While Model 1 excels in simplicity, Model 2's robustness makes it ideal for accelerated expansion scenarios, highlighting the potential of f(Q,Lm)f(Q, L_m) gravity in explaining cosmic phenomena.

Keywords

Cite

@article{arxiv.2504.03855,
  title  = {Energy conditions in $f(Q, L_m)$ gravity},
  author = {Y. Myrzakulov and O. Donmez and M. Koussour and S. Muminov and D. Ostemir and J. Rayimbaev},
  journal= {arXiv preprint arXiv:2504.03855},
  year   = {2025}
}

Comments

The European Physical Journal C published version