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  4. Moduli induced cogenesis of baryon asymmetry and dark matter
 
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Moduli induced cogenesis of baryon asymmetry and dark matter

Source
Physics Letters Section B Nuclear Elementary Particle and High Energy Physics
ISSN
03702693
Date Issued
2016-05-10
Author(s)
Dhuria, Mansi
Hati, Chandan
Sarkar, Utpal
DOI
10.1016/j.physletb.2016.03.018
Volume
756
Abstract
We study a cogenesis mechanism in which the observed baryon asymmetry of the universe and the dark matter abundance can be produced simultaneously at low reheating temperature without violating baryon number in the fundamental interactions. In particular, we consider a model which can be realized in the context of type IIB large volume string compactifications. The matter superfields in this model include additional pairs of color triplet and singlet superfields in addition to the Minimal Supersymmetric Standard Model (MSSM) superfields. Assuming that the mass of the additional singlet fermions is O(GeV) and of the color triplet fermions is O(TeV), we show that the modulus dominantly decays into the additional color triplet superfields. After soft supersymmetry (SUSY) breaking, the lightest eigenstate of scalar component of color triplet superfield further decays into fermionic component of singlet superfield and quarks without violating baryon number. Imposing discrete Z2 symmetry, it follows that the singlet fermion will not further decay into the SM particles and therefore it can be considered as a stable asymmetric dark matter (ADM) component. We find that the decay of the lightest eigenstate of scalar component of color triplet superfield gives the observed baryon asymmetry in the visible sector, an asymmetric dark matter component with the right abundance and naturally explains cosmic coincidence.
Publication link
https://doi.org/10.1016/j.physletb.2016.03.018
URI
https://d8.irins.org/handle/IITG2025/21908
Subjects
Baryogenesis | Dark matter | LVS | Moduli decay
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