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Curvatons in Supersymmetric Models

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arxiv hep-ph/0308174 v1 pith:5DSYVL5P submitted 2003-08-18 hep-ph astro-ph

Curvatons in Supersymmetric Models

classification hep-ph astro-ph
keywords curvatonfieldssupersymmetricfieldfluctuationsaffectaffleck-dinecandidates
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study the curvaton scenario in supersymmetric framework paying particular attention to the fact that scalar fields are inevitably complex in supersymmetric theories. If there are more than one scalar fields associated with the curvaton mechanism, isocurvature (entropy) fluctuations between those fields in general arise, which may significantly affect the properties of the cosmic density fluctuations. We examine several candidates for the curvaton in the supersymmetric framework, such as moduli fields, Affleck-Dine field, $F$- and $D$-flat directions, and right-handed sneutrino. We estimate how the isocurvature fluctuations generated in each case affect the cosmic microwave background angular power spectrum. With the use of the recent observational result of the WMAP, stringent constraints on the models are derived and, in particular, it is seen that large fraction of the parameter space is excluded if the Affleck-Dine field plays the role of the curvaton field. Natural and well-motivated candidates of the curvaton are also listed.

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  1. Reviving the Affleck-Dine Curvaton Scenario with Compensated Isocurvature Perturbations

    astro-ph.CO 2026-07 conditional novelty 6.0

    The Affleck-Dine field can act as both baryogenesis engine and curvaton if gravitino dark matter, produced before curvaton decay, supplies the compensating isocurvature perturbation that hides the baryon isocurvature ...