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March 1, 2024Journal of Cosmology and Astroparticle Physics74 citationsOpen Access

Non-metricity with boundary terms: 𝖿(𝖰,𝖢) gravity and cosmology

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ADAvik DeTLTee‐How LooESEmmanuel N. Saridakis

Key Points

  • Modified Friedmann equations indicate possible interactions between matter and dark energy, suggesting new cosmological behaviors.
  • An effective dark-energy sector of geometrical origin may lead to diverse cosmological phenomenology, revolutionizing existing theories.
  • Utilizing symmetric teleparallel geometry with a boundary term, we derive field equations applicable to cosmology, highlighting unique implications for dark energy aspects in the universe's history. This study indicates these interactions could impact cosmic evolution significantly, including the effective dark-energy equation-of-state parameter behavior, which varies through epochs.

Abstract

Abstract We formulate f ( Q,C ) gravity and cosmology. Such a construction is based on the symmetric teleparallel geometry, but apart form the non-metricity scalar Q we incorporate in the Lagrangian the boundary term C of its difference from the standard Levi-Civita Ricci scalar R̊ . We extract the general metric and affine connection field equations, we apply them at a cosmological framework, and adopting three different types of symmetric teleparallel affine connections we obtain the modified Friedmann equations. As we show, we acquire an effective dark-energy sector of geometrical origin, which can lead to interesting cosmological phenomenology. Additionally, we may obtain an effective interaction between matter and dark energy. Finally, examining a specific model, we show that we can obtain the usual thermal history of the universe, with the sequence of matter and dark-energy epochs, while the effective dark-energy equation-of-state parameter can be quintessence-like, phantom-like, or cross the phantom-divide during evolution.

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Cite This Study

De et al. (2024) studied this question.

synapsesocial.com/papers/68e7604eb6db6435876d7541https://doi.org/10.1088/1475-7516/2024/03/050
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