Is the dark matter particle its own antiparticle?
arXiv:1610.06581 · doi:10.1103/PhysRevD.95.095010
Abstract
We propose a test based on direct detection data that allows to determine if the dark matter particle is different from its antiparticle. The test requires the precise measurement of the dark matter spin-independent direct detection cross sections off different nuclei, and consists of interpreting such signals in terms of self-conjugate (particle antiparticle) dark matter to see if such interpretation is consistent. If it is not, the dark matter must be different from its antiparticle. We illustrate this procedure for two sets of target nuclei, and , identifying the regions of the parameter space where it is particularly feasible. Our results indicate that future signals in direct detection experiments, if sufficiently accurate, might be used to establish that the dark matter particle is not its own antiparticle --a major step towards the determination of the fundamental nature of the dark matter.
6 pages, 4 figures
References in corpus (9)
- Results from a search for dark matter in the complete LUX exposure
- Dark Matter Results from 225 Live Days of XENON100 Data
- Search for Low-Mass WIMPs with SuperCDMS
- First Results from the DarkSide-50 Dark Matter Experiment at Laboratori Nazionali del Gran Sasso
- Sneutrino cold dark matter, a new analysis: relic abundance and detection rates
- Complementarity of Dark Matter Direct Detection Targets
- Dirac Neutrino Dark Matter
- Probing WIMP particle physics and astrophysics with direct detection and neutrino telescope data
- Status of ArDM-1t: First observations from operation with a full ton-scale liquid argon target
Cited by in corpus (28)
- The Waning of the WIMP? A Review of Models, Searches, and Constraints
- The Dark Rises via Kinetic Mixing
- R-parity as a residual gauge symmetry : probing a theory of cosmological dark matter
- Searching for Secluded Dark Matter with H.E.S.S., Fermi-LAT, and Planck
- Reconstructing Non-standard Cosmologies with Dark Matter
- The Dark Side of Flipped Trinification
- Augury of Darkness: The Low-Mass Dark Z' Portal
- Multi-component scalar dark matter from a symmetry: a systematic analysis
- Search for right-handed neutrinos from dark matter annihilation with gamma-rays
- A Two Higgs Doublet Model for Dark Matter and Neutrino Masses
- The Dark Sequential Z' Portal: Collider and Direct Detection Experiments
- Determining Dark Matter properties with a XENONnT/LZ signal and LHC-Run3 mono-jet searches
- Dark matter spin determination with directional direct detection experiments
- Surrogate Models for Direct Dark Matter Detection
- Compatibility of a dark matter discovery at XENONnT/LZ with the WIMP thermal production mechanism
- Search for Semi-Annihilating Dark Matter with Fermi-LAT, H.E.S.S., Planck, and the Cherenkov Telescope Array
- On the Role of Neutrinos Telescopes in the Search for Dark Matter Annihilations in the Sun
- Characterizing dark matter at the LHC in Drell-Yan events
- Prospects for Distinguishing Dark Matter Models Using Annual Modulation
- New Constraints on Xenonphobic Dark Matter from DEAP-3600
- Sub-MeV Bosonic Dark Matter, Misalignment Mechanism and Galactic Dark Matter Halo Luminosities
- Rejecting the Majorana nature of dark matter with electron scattering experiments
- XENON1T Takes a Razor to a Dark -Inspired Model
- Gamma-ray lines may reveal the CP nature of the dark matter particle
- Search for GeV-scale Dark Matter from the Galactic Center with IceCube-DeepCore
- Detecting Bosonic Dark Matter with Neutron Stars
- Muon Magnetic Moment and Lepton Flavor Violation in the Economical 3-3-1 Model
- Probing P- and CP-violation in dark matter interactions