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Matter and antimatter in the universe

New Journal of Physics · 2012 · Vol. 14(9) · pp. 095012–095012
Laurent CanettiMarco DrewesMikhail Shaposhnikov

Abstract

We review observational evidence for a matter-antimatter asymmetry in the early universe, which leads to the remnant matter density we observe today. We also discuss bounds on the presence of antimatter in the present-day universe, including the possibility of a large lepton asymmetry in the cosmic neutrino background. We briefly review the theoretical framework within which baryogenesis, the dynamical generation of a matter-antimatter asymmetry, can occur. As an example, we discuss a testable minimal particle physics model that simultaneously explains the baryon asymmetry of the universe, neutrino oscillations and dark matter.

Cosmology and Gravitation TheoriesParticle physics theoretical and experimental studiesDark Matter and Cosmic PhenomenaPhysicsBaryogenesisAntimatterAsymmetryBaryon asymmetryNeutrinoUniverseParticle physicsDark matterHot dark matter
Citations
413
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10.51
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References
180
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Cited by
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