A Closer Look in the Mirror: Reflections on the Matter/Dark Matter Coincidence
arXiv:2401.12286
Abstract
We argue that the striking similarity between the cosmic abundances of baryons and dark matter, despite their very different astrophysical behavior, strongly motivates the scenario in which dark matter resides within a rich dark sector parallel in structure to that of the standard model. The near cosmic coincidence is then explained by an approximate exchange symmetry between the two sectors, where dark matter consists of stable dark neutrons, with matter and dark matter asymmetries arising via parallel WIMP baryogenesis mechanisms. Taking a top-down perspective, we point out that an adequate symmetry necessitates solving the electroweak hierarchy problem in each sector, without our committing to a specific implementation. A higher-dimensional realization in the far UV is presented, in which the hierarchical couplings of the two sectors and the requisite -breaking structure arise naturally from extra-dimensional localization and gauge symmetries. We trace the cosmic history, paying attention to potential pitfalls not fully considered in previous literature. Residual -breaking can very plausibly give rise to the asymmetric reheating of the two sectors, needed to keep the cosmological abundance of relativistic dark particles below tight bounds. We show that, despite the need to keep inter-sector couplings highly suppressed after asymmetric reheating, there can naturally be order-one couplings mediated by TeV scale particles which can allow experimental probes of the dark sector at high energy colliders. Massive mediators can also induce dark matter direct detection signals, but likely at or below the neutrino floor.
Published version. 29 pages + references, 6 figures, 2 sectors
References in corpus (34)
- The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background
- Leptogenesis
- The NANOGrav 15-year Data Set: Search for Signals from New Physics
- Constraints on the Self-Interaction Cross-Section of Dark Matter from Numerical Simulations of the Merging Galaxy Cluster 1E 0657-5
- Asymmetric Dark Matter
- FLAG Review 2021
- Ab initio calculation of the neutron-proton mass difference
- CMB-S4 Science Case, Reference Design, and Project Plan
- Light Nuclei and Hypernuclei from Quantum Chromodynamics in the Limit of SU(3) Flavor Symmetry
- Dark Matter from new Technicolor Theories
- Towards Working Technicolor: Effective Theories and Dark Matter
- Fog on the horizon: a new definition of the neutrino floor for direct dark matter searches
- Search for resonant and nonresonant new phenomena in high-mass dilepton final states at 13 TeV
- Dark Nuclei I: Cosmology and Indirect Detection
- On Partial Compositeness and the CP asymmetry in charm decays
- A Holographic Twin Higgs Model
- Colorless Top Partners, a 125 GeV Higgs, and the Limits on Naturalness
- Search for Coherent Elastic Scattering of Solar B Neutrinos in the XENON1T Dark Matter Experiment
- Baryon-Baryon Interactions and Spin-Flavor Symmetry from Lattice Quantum Chromodynamics
- Have pulsar timing array methods detected a cosmological phase transition?
- A variational study of two-nucleon systems with lattice QCD
- Search for dinucleon decay into pions at Super-Kamiokande
- Implication of nano-Hertz stochastic gravitational wave on dynamical dark matter through a dark first-order phase transition
- Composite Twin Dark Matter
- Grand unified hidden-sector dark matter
- Strong isospin violation and chiral logarithms in the baryon spectrum
- The Reach of Threshold-Corrected Dark QCD
- Unified dark matter with intermediate symmetry breaking scales
- CMB-HD: Astro2020 RFI Response
- Exploring the cosmological dark matter coincidence using infrared fixed points
- Asymmetric reheating from a symmetric inflationary potential
- Science from an Ultra-Deep, High-Resolution Millimeter-Wave Survey
- A Dynamical Explanation of the Dark Matter-Baryon Coincidence
- Bridging the Hz gap in the gravitational-wave landscape: unveiling dark baryons