Superheavy dark matter with discrete gauge symmetries
- 8 October 1998
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 58 (10) , 103503
- https://doi.org/10.1103/physrevd.58.103503
Abstract
We show that there are discrete gauge symmetries which naturally protect heavy particles from decaying into ordinary light particles in the supersymmetric standard model. This makes the proposal that superheavy particles constitute part of the dark matter in the present universe very attractive. It is more interesting that there is a class of discrete gauge symmetries which naturally accommodates a long-lived unstable particle. We find that in some discrete models, for example, a superheavy particle has a lifetime of for a mass of This long lifetime is guaranteed by the absence of lower dimensional operators (of light particles) coupled to the We briefly discuss a possible explanation for the recently observed ultrahigh-energy cosmic ray events by the decay of this unstable particle.
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This publication has 12 references indexed in Scilit:
- Ultrahigh Energy Cosmic Rays without Greisen-Zatsepin-Kuzmin CutoffPhysical Review Letters, 1997
- Observation of a Very Energetic Cosmic Ray Well Beyond the Predicted 2.7 K Cutoff in the Primary Energy SpectrumPhysical Review Letters, 1994
- The cosmic-ray energy spectrum observed by the Fly's EyeThe Astrophysical Journal, 1994
- More about discrete gauge anomaliesNuclear Physics B, 1993
- Discrete gauge symmetries and the origin of baryon and lepton number conservation in supersymmetric versions of the standard modelNuclear Physics B, 1992
- Confinement of fractional charges yields integer-charged relics in string modelsPhysics Letters B, 1990
- Unitarity limits on the mass and radius of dark-matter particlesPhysical Review Letters, 1990
- Discrete gauge symmetry in continuum theoriesPhysical Review Letters, 1989
- Black holes as red herrings: Topological fluctuations and the loss of quantum coherenceNuclear Physics B, 1988
- Anomaly cancellations in supersymmetric D = 10 gauge theory and superstring theoryPhysics Letters B, 1984