Effective theory of Dirac dark matter
- 13 May 2009
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 79 (9) , 095007
- https://doi.org/10.1103/physrevd.79.095007
Abstract
A stable Dirac fermion with four-fermion interactions to leptons suppressed by a scale is shown to provide a viable candidate for dark matter. The thermal relic abundance matches cosmology, while nuclear recoil direct detection bounds are automatically avoided in the absence of (large) couplings to quarks. The annihilation cross section in the early Universe is the same as the annihilation in our Galactic neighborhood. This allows Dirac fermion dark matter to naturally explain the positron ratio excess observed by PAMELA with a minimal boost factor, given present astrophysical uncertainties. We use the Galprop program for propagation of signal and background; we discuss in detail the uncertainties resulting from the propagation parameters and, more importantly, the injected spectra. Fermi/GLAST has an opportunity to see a feature in the gamma-ray spectrum at the mass of the Dirac fermion. The excess observed by ATIC/PPB-BETS may also be explained with Dirac dark matter that is heavy. A supersymmetric model with a Dirac bino provides a viable UV model of the effective theory. The dominance of the leptonic operators, and thus the observation of an excess in positrons and not in antiprotons, is naturally explained by the large hypercharge and low mass of sleptons as compared with squarks. Minimizing the boost factor implies the right-handed selectron is the lightest slepton, which is characteristic of our model. Selectrons (or sleptons) with mass less than a few hundred GeV are an inescapable consequence awaiting discovery at the LHC.
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This publication has 60 references indexed in Scilit:
- Model-independent implications of the , cosmic ray spectra on properties of Dark MatterNuclear Physics B, 2009
- An anomalous positron abundance in cosmic rays with energies 1.5–100 GeVNature, 2009
- Two dark matter components in dark matter extension of the minimal supersymmetric standard model and the high energy positron spectrum in PAMELA/HEAT dataPhysical Review D, 2009
- PAMELA and dark matterPhysics Letters B, 2009
- Gamma rays and positrons from a decaying hidden gauge bosonPhysics Letters B, 2009
- New positron spectral features from supersymmetric dark matter: A way to explain the PAMELA data?Physical Review D, 2008
- Minimal Dark Matter predictions for galactic positrons, anti-protons, photonsNuclear Physics B, 2008
- Searching for dark matter with future cosmic positron experimentsPhysical Review D, 2005
- Kaluza-Klein dark matter and the positron excessPhysical Review D, 2004
- Kaluza-Klein Dark MatterPhysical Review Letters, 2002