English

Running vacuum interacting with dark matter or with running gravitational coupling. Phenomenological implications

General Relativity and Quantum Cosmology 2022-07-19 v2 Cosmology and Nongalactic Astrophysics High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

The cosmological term, Λ\Lambda, in Einstein's equations is an essential ingredient of the `concordance' Λ\LambdaCDM model of cosmology. In this mini-review presentation, we assess the possibility that Λ\Lambda can be a dynamical quantity, more specifically a `running quantity' in quantum field theory in curved spacetime. A great deal of phenomenological works have shown in the last few years that this option (sometimes accompanied with a running gravitational coupling) may cure some of the tensions afflicting the Λ\LambdaCDM. The `running vacuum models' (RVM's) are characterized by the vacuum energy density, ρvac\rho_{\rm vac}, being a series of (even) powers of the Hubble rate and its time derivatives. Here we describe the technical quantum field theoretical origin of the RVM structure in FLRW spacetime, which goes well-beyond the original semi-qualitative renormalization group arguments. In particular, we compute the renormalized energy-momentum tensor using the adiabatic regularization procedure and show that it leads to the RVM form. In other words, we find that the renormalized vacuum energy density, ρvac(H)\rho_{vac}(H) evolves as a (constant) additive term plus a leading dynamical components O(H2){\cal O}(H^2). There are also O(H4){\cal O}(H^4) contributions, which can be relevant for the early universe. Remarkably enough, the renormalized ρvac(H)\rho_{\rm vac}(H) does not exhibit dangerous terms proportional to the quartic power of the masses (m4\sim m^4) of the fields. It is well-known that these terms have been the main source of trouble since they are responsible for the extreme fine tuning and ultimately for the cosmological constant problem. In this context, the current ρvac(H)\rho_{vac}(H) is dominated by a constant term, as it should be, but it acquires a mild dynamical component νH2\sim \nu H^2 (ν1|\nu|\ll1) which makes the RVM to mimic quintessence.

Keywords

Cite

@article{arxiv.2109.12086,
  title  = {Running vacuum interacting with dark matter or with running gravitational coupling. Phenomenological implications},
  author = {Joan Sola Peracaula},
  journal= {arXiv preprint arXiv:2109.12086},
  year   = {2022}
}

Comments

21 pages, slightly extended discussion. References added and others updated. Invited talk in the 16th Marcel-Grossmann virtual Conference (MG16), parallel session DM1: Interacting Dark Matter

R2 v1 2026-06-24T06:18:17.355Z