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2025 article

Relativistic tensorial model for fractional interaction between dark matter and gravity

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6Institutions déclarées
1Pays d’affiliation déclarés

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Le résumé fourni par la source

In a series of recent papers it was shown that several aspects of dark matter (DM) phenomenology, such as the velocity profiles of individual dwarfs and spiral galaxies, the scaling relations observed in the latter, and the pressure and density profiles of galaxy clusters, can be explained by assuming the DM component in virialized halos to feel a nonlocal fractional interaction mediated by gravity. Motivated by the remarkable success of this model, in a recent work we have looked for a general relativistic extension, proposing a theory, dubbed relativistic scalar fractional gravity or RSFG, in which the trace of the DM stress-energy tensor couples to the scalar curvature via a nonlocal operator constructed with a fractional power of the d'Alembertian. In this work we construct an extension of that model in which also a nonlocal coupling between the Ricci tensor and the DM stress energy tensor is present. In the action we encode the normalization between these scalar and tensorial term into two operators ${\mathcal{F}}_{0}(\ensuremath{\square})$ and ${\mathcal{F}}_{2}(\ensuremath{\square})$, and we derive the general field equations. We then take the weak field limit of the latter, showing that they reduce to general relativity sourced by an effective stress energy tensor, featuring a nonlocal isotropic pressure and anisotropic stress, even if one starts with the assumption of a pressureless DM fluid. Finally, after having worked out the lensing theory in our setup, we test particularly interesting realizations of our framework against the measured convergence profiles of the individual and stacked clusters of the CLASH sample, finding remarkable consistency with the data.

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DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Relativistic tensorial model for fractional interaction between dark matter and gravity
Date Crossref
09/01/2025
Éditeur
American Physical Society (APS)
Type
journal-article

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Les institutions déclarées

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

Cosmology and Gravitation TheoriesBlack Holes and Theoretical PhysicsAdvanced Differential Geometry Research

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