From infinite to infinitesimal: Using the Universe as a dataset to probe Casimir corrections to the vacuum energy from fields inhabiting the dark dimension
arXiv:2404.17334 · doi:10.1016/j.dark.2024.101715
Abstract
Promptly after high-resolution experiments harbinger the field of precision cosmology low- and high-redshift observations abruptly gave rise to a tension in the measurement of the present-day expansion rate of the Universe () and the clustering of matter (). The statistically significant discrepancies between the locally measured values of and and the ones inferred from observations of the cosmic microwave background assuming the canonical cold dark matter (CDM) cosmological model have become a new cornerstone of theoretical physics. CDM is one of the many beyond Standard Model setups that have been proposed to simultaneously resolve the cosmological tensions. This setup relies on an empirical conjecture, which postulates that switched sign (from negative to positive) at a critical redshift . We reexamine a stringy model that can describe the transition in the vacuum energy hypothesized in CDM. The model makes use of the Casimir forces driven by fields inhabiting the incredible bulk of the dark dimension scenario. Unlike the CDM setup the model deviates from CDM in the early universe due to the existence of relativistic neutrino-like species. Using the Boltzmann solver CLASS in combination with MontePython we confront predictions of the stringy model to experimental data (from the Planck mission, Pantheon+ supernova type Ia, BAO, and KiDS-1000). We show that the string-inspired model provides a satisfactory fit to the data and can resolve the cosmological tensions.
Appendix added; conclusions unchanged
References in corpus (13)
- On the Geometry of the String Landscape and the Swampland
- The Swampland: Introduction and Review
- The trouble with
- Seven hints that early-time new physics alone is not sufficient to solve the Hubble tension
- The fourth data release of the Kilo-Degree Survey: ugri imaging and nine-band optical-IR photometry over 1000 square degrees
- Black Hole Bound on the Number of Species and Quantum Gravity at LHC
- Thermalisation of sterile neutrinos in the early Universe in the 3+1 scheme with full mixing matrix
- Dark energy in light of the early JWST observations: case for a negative cosmological constant?
- Neutrinos in Large Extra Dimensions and Short-Baseline Appearance
- Anti-de Sitter de Sitter transition driven by Casimir forces and mitigating tensions in cosmological parameters
- Fuzzy Dark Matter and the Dark Dimension
- Large extra dimensions from higher-dimensional inflation
- Probing the Dark Dimension with Auger data
Cited by in corpus (17)
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- Composite Dark Energy and the Cosmological Tensions
- CDM cosmology: Alleviating major cosmological tensions by predicting standard neutrino properties
- Mapping the CDM scenario to modified gravity: Effects on structure growth rate
- Unexplored regions in teleparallel gravity: Sign-changing dark energy density
- Thin-wall vacuum decay in the presence of a compact dimension meets the and tensions
- Linear matter density perturbations in the CDM model: Examining growth dynamics and addressing the tension
- Do we need wavelets in the late Universe?
- Cosmographic analysis of sign-switching dark energy
- CDM cosmology from a type-II minimally modified gravity
- Bulk Black Hole Dark Matter
- Revisiting CPL with sign-switching density: To cross or not to cross the NECB
- Hitchhiker's Guide to the Swampland: The Cosmologist's Handbook to the string-theoretical Swampland Programme
- Nonlinear Matter Power Spectrum from relativistic -body Simulations: CDM versus CDM
- Crunching, Bouncing, and Cyclical Cosmologies from Dark Sector Interactions
- Statistical consistency of sign-switching vacuum energy with cosmological observations
- Background-level reconstruction of scalar-field potentials from dark-energy histories and comparison with analytic potential families