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Can a vector field be responsible for the curvature perturbation in the Universe?

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arxiv hep-ph/0607229 v2 pith:47GHDXCQ submitted 2006-07-20 hep-ph astro-phhep-th

Can a vector field be responsible for the curvature perturbation in the Universe?

classification hep-ph astro-phhep-th
keywords fieldvectorinflationscaleperturbationuniverseanisotropybecome
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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I investigate the possibility that the observed curvature perturbation is due to a massive vector field. To avoid generating a large scale anisotropy the vector field is not taken to be driving inflation. Instead it is assumed to become important after inflation when it may dominate the Universe and imprint its perturbation spectrum before its decay, as in the curvaton scenario. It is found that, to generate a scale invariant spectrum of perturbations, the mass-squared of the vector field has to be negative and comparable to the Hubble scale during inflation. After inflation the mass-squared must become positive so that the vector field engages into oscillations. It is shown that, such an oscillating vector field behaves as pressureless matter and does not lead to large scale anisotropy when it dominates the Universe. The possibilitiy of realising this scenario in supergravity is also outlined.

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  1. George, I and the curvaton

    hep-ph 2026-07 accept novelty 1.0

    A retrospective summary of joint papers that developed the curvaton as an alternative source of cosmic curvature perturbations, including axion and vector realizations.