Cosmological Dark Matter from a Bulk Black Hole
arXiv:2212.13268 · doi:10.1103/PhysRevD.107.115014
Abstract
We study the cosmology of a three-brane in a specific five-dimensional scalar-gravity (i.e. soft-wall) background, known as the linear dilaton background. We discover that the Friedmann equation of the brane-world automatically contains a term mimicking pressureless matter. We propose to identify this term as dark matter. This dark matter arises as a projection of the bulk black hole on the brane, which contributes to the brane Friedmann equation via both the Weyl tensor and the scalar stress tensor. The nontrivial matter-like behavior is due to an exact cancellation between the Weyl and scalar pressures. We show that the Newtonian potential only receives a mild short-distance correction going as inverse distance squared, ensuring compatibility of the linear dilaton brane-world with observed 4D gravity. Our setup can be viewed as a consistent cosmological description of the holographic theories arising in the linear dilaton background. We also present more general scalar-gravity models where the brane cosmology features an effective energy density whose behavior smoothly interpolates between dark radiation, dark matter and dark energy depending on a model parameter.
v2: 7 pages, 2 figures. Text improved, model in Sec. V.A. added, references added, matches journal version
References in corpus (12)
- Nonlinear Fluid Dynamics from Gravity
- Linear Confinement and AdS/QCD
- Exploring improved holographic theories for QCD: Part II
- Mimicking the QCD equation of state with a dual black hole
- Electroweak corrections to W + jet hadroproduction including leptonic W-boson decays
- Dynamical Soft-Wall AdS/QCD
- The Soft-Wall Standard Model
- Suppressing Electroweak Precision Observables in 5D Warped Models
- On Continuum Effective Field Theories, Gravity and Holography
- On Holography in General Background and the Boundary Effective Action from AdS to dS
- From Soft Walls to Infrared Branes
- The Continuum Dark Matter Zoo
Cited by in corpus (7)
- Holography of Linear Dilaton Spacetimes from the Bottom Up
- Background-Induced Forces from Dark Relics
- Holographic Fluids from 5D Dilaton Gravity
- Entanglement Entropy and Thermal Phase Transitions from Curvature Singularities
- Exploring Dark Forces with Multimessenger Studies of Extreme Mass Ratio Inspirals
- Limits on Kaluza-Klein Portal Dark Matter Models
- Undecay