Nonthermal production of baryon and dark matter
arXiv:hep-ph/0510251 · doi:10.1016/j.astropartphys.2005.10.003
Abstract
We study nonthermal production of baryon and dark matter. If we extend the MSSM by introducing some singlet chiral superfields so as to enlarge the conserved global symmetry, the abundance of the baryon and the dark matter in the universe may be explained as the charge asymmetry of that symmetry. In such a case, the baryon energy density and the dark matter energy density in the present universe can be correlated each other and take the similar order values naturally.
16 pages, to be published in Astroparticle Physics
References in corpus (2)
Cited by in corpus (22)
- Review of asymmetric dark matter
- Gravitational probes of dark matter physics
- Dark Nuclei I: Cosmology and Indirect Detection
- Aidnogenesis via Leptogenesis and Dark Sphalerons
- Twin Higgs Asymmetric Dark Matter
- Xogenesis
- Relic Abundance of Asymmetric Dark Matter
- Big Bang Synthesis of Nuclear Dark Matter
- Asymmetric Dark Matter and Dark Radiation
- Closing in on Asymmetric Dark Matter I: Model independent limits for interactions with quarks
- Exothermic Double-Disk Dark Matter
- Regenerating a Symmetry in Asymmetric Dark Matter
- Pangenesis in a Baryon-Symmetric Universe: Dark and Visible Matter via the Affleck-Dine Mechanism
- Visible and dark matter from a first-order phase transition in a baryon-symmetric universe
- Asymmetric Dark Matter and Effective Operators
- Baryon and Dark Matter Genesis from Strongly Coupled Strings
- Asymmetric Dark Matter via Spontaneous Co-Genesis
- Cosmic Coincidence and Asymmetric Dark Matter in a Stueckelberg Extension
- A Unified Theory of Matter Genesis: Asymmetric Freeze-In
- Affleck-Dine dynamics and the dark sector of pangenesis
- Leptogenesis and dark matter unified in a non-SUSY model for neutrino masses
- Dark world and baryon asymmetry from a common source