On the cosmology and terrestrial signals of sexaquark dark matter
arXiv:2403.03972 · doi:10.1103/PhysRevD.110.023515
Abstract
We investigate the hypothesis that sexaquarks, hypothetical stable six-quark states, could be a significant component of the dark matter. We expand on previous studies of sexaquark cosmology, accounting for the possibility that some relevant interaction cross sections might be strongly suppressed below expectations based on dimensional analysis. We update direct-detection constraints on stable sexaquarks comprising a subdominant fraction of the dark matter, as well as limits on the annihilation of an antisexaquark component from Super-Kamiokande. We argue that the scenario where sexaquarks comprise a fraction of the dark matter would require either a suppression of in sexaquark interactions with baryons, combined with a very high yield of net sexaquark number from the quark-hadron transition, or else a very strong suppression of the cross section for antisexaquark annihilation on nucleons (24+ orders of magnitude below the QCD scale). Independently, we find that a sexaquark component comprising more than of the dark matter can be excluded from direct-detection bounds, unless its scattering cross section is severely suppressed compared to the expected scale of strong and even electromagnetic interactions.
27 pages + appendices, 14 figures, v2: version accepted for publication
References in corpus (36)
- Asymmetric Dark Matter
- WIMP Annihilation and Cooling of Neutron Stars
- General Constraints on Dark Matter Decay from the Cosmic Microwave Background
- Evidence for a Bound H-dibaryon from Lattice QCD
- Searching for low-mass dark matter particles with a massive Ge bolometer operated above-ground
- Hylogenesis: A Unified Origin for Baryonic Visible Matter and Antibaryonic Dark Matter
- Towards Closing the Window on Strongly Interacting Dark Matter: Far-Reaching Constraints from Earth's Heat Flow
- Results on MeV-scale dark matter from a gram-scale cryogenic calorimeter operated above ground
- Electromagnetic properties of dark matter: dipole moments and charge form factor
- and N interactions from Lattice QCD near the physical point
- Dark Matter Annihilation to Neutrinos
- Search for proton decay via and with an enlarged fiducial volume in Super-Kamiokande I-IV
- How Dark Are Majorana WIMPs? Signals from MiDM and Rayleigh Dark Matter
- Results on Low-Mass Weakly Interacting Massive Particles from an 11 kg-day Target Exposure of DAMIC at SNOLAB
- Cosmological Constraints on Dark Matter Interactions with Ordinary Matter
- Loop-induced dark matter direct detection signals from gamma-ray lines
- Search for light dark matter with ionization signals in the PandaX-4T Experiment
- Weakly bound dibaryon from SU(3)-flavor-symmetric QCD
- A Search for the Cosmic Ray Boosted Sub-GeV Dark Matter at the PandaX-II Experiment
- Sexaquark dilemma in neutron stars and its solution by quark deconfinement
- Search for dinucleon decay into pions at Super-Kamiokande
- Neutron-Antineutron Oscillation Search using a 0.37 MegatonYear Exposure of Super-Kamiokande
- Search for Dark-Matter-Nucleon Interactions with a Dark Mediator in PandaX-4T
- Indirect Search for Dark Matter from the Galactic Center and Halo with the Super-Kamiokande Detector
- Studies of the Earth shielding effect to direct dark matter searches at the China Jinping Underground Laboratory
- No room to hide: implications of cosmic-ray upscattering for GeV-scale dark matter
- Search for dark matter induced de-excitation of Ta
- Sensitivity projections for a dual-phase argon TPC optimized for light dark matter searches through the ionization channel
- First study of reaction using -nucleus scattering at an electron-positron collider
- Evaporation Barrier for Dark Matter in Celestial Bodies
- Dark Matter Annihilation inside Large Volume Neutrino Detectors
- Accelerating Earth-Bound Dark Matter
- An Analytic Approach to Light Dark Matter Propagation
- Neutrinos from Earth-Bound Dark Matter Annihilation
- Bouncing Dark Matter
- Running anomalous dimensions in holographic QCD: from the proton to the sexaquark
Cited by in corpus (6)
- COZMIC. I. Cosmological Zoom-in Simulations with Initial Conditions Beyond Cold Dark Matter
- Optimal Celestial Bodies for Dark Matter Detection
- Observational Probes of the Neutron Star Equation of State with Hyperons, Bosonic Dark Matter, and Quark Matter
- Probing Strange Dark Matter through -mode Oscillations of Neutron Stars with Hyperons and Quark Matter
- Non-Thermal Production of Sexaquark Dark Matter
- Secluded Dark Composites and Remnant Binding Fields