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February 11, 20260 citationsOpen Access

A Cyclic Cosmological Model Without Singularities, Inflation, or Dark Energy Based on Modified Gravity

AJAnida Jusufovic

Key Points

  • The aim is to develop a cyclic cosmological model that avoids singularities, cosmic inflation, and dark energy while remaining consistent with current observations.
  • Developed a cyclic cosmological model based on modified gravity.
  • Utilized a minimally modified form of General Relativity and an f(R) gravity with an additional quadratic curvature term.
  • Addressed cosmic expansion using geometric effects of modified gravity and light-propagation distortions.
  • Presented a non-singular cosmological bounce that eliminates the Big Bang singularity.
  • Explained the apparent acceleration of cosmic expansion without using a cosmological constant.
  • Reproduced Type Ia supernova luminosity-distance relation without invoking dark energy.
  • Addressed cosmological tensions such as the Hubble tension and anomalies in the CMB.

Abstract

This work presents a cyclic cosmological model that eliminates the need for a Big Bang singularity, cosmic inflation, and dark energy. The model is based on a minimally modified form of General Relativity, such as an f(R) gravity with an additional quadratic curvature term. This modification remains negligible at low curvature but becomes repulsive at high curvature, enabling a non-singular cosmological bounce. Quantum mechanics acts only on matter fields and does not need to be extended to the spacetime manifold, since the model avoids divergent densities and Planck-scale singularities. The observed apparent acceleration of cosmic expansion is explained without a cosmological constant. Instead, the model combines large-scale geometric effects from modified gravity with light-propagation distortions caused by mild inhomogeneities in the matter distribution. This combination can reproduce the Type Ia supernova luminosity–distance relation without invoking dark energy. The model naturally addresses several current cosmological tensions, including the Hubble tension, early massive galaxies observed by JWST, large-scale CMB anomalies, and the stability of cosmic structures. Overall, this framework provides a minimalist and observationally consistent alternative to the ΛCDM paradigm, relying only on established physics and avoiding speculative components such as inflation fields, vacuum energy, or quantum gravity.

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Cite This Study

Anida Jusufovic (2026) studied this question.

synapsesocial.com/papers/698c1bdc267fb587c655de5ahttps://doi.org/10.5281/zenodo.18544168
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