English

Aspects of Everpresent $\Lambda$ (I): A Fluctuating Cosmological Constant from Spacetime Discreteness

General Relativity and Quantum Cosmology 2024-02-22 v2 Cosmology and Nongalactic Astrophysics High Energy Physics - Theory

Abstract

We provide a comprehensive discussion of the Everpresent Λ\Lambda cosmological model arising from fundamental principles in causal set theory and unimodular gravity. In this framework the value of the cosmological constant (Λ\Lambda) fluctuates, in magnitude and in sign, over cosmic history. At each epoch, Λ\Lambda stays statistically close to the inverse square root of the spacetime volume. Since the latter is of the order of H2H^2 today, this provides a way out of the cosmological constant puzzle without fine tuning. Our discussion includes a review of what is known about the topic as well as new motivations and insights supplementing the original arguments. We also study features of a phenomenological implementation of this model, and investigate the statistics of simulations based on it. Our results show that while the observed values of H0H_0 and ΩΛ0\Omega_\Lambda^0 are not typical outcomes of the model, they can be achieved through a modest number of simulations. We also confirm some expected features of Λ\Lambda based on this model, such as the fact that it stays statistically close to the value of the total ambient energy density (be it matter or radiation dominated), and that it is likely to change sign roughly every Hubble timescale.

Keywords

Cite

@article{arxiv.2304.03819,
  title  = {Aspects of Everpresent $\Lambda$ (I): A Fluctuating Cosmological Constant from Spacetime Discreteness},
  author = {Santanu Das and Arad Nasiri and Yasaman K. Yazdi},
  journal= {arXiv preprint arXiv:2304.03819},
  year   = {2024}
}

Comments

28 pages, 10 figures