Q-ball formation in the wake of Hubble-induced radiative corrections
arXiv:hep-ph/0203062 · doi:10.1103/PhysRevD.65.125003
Abstract
We discuss some interesting aspects of the -ball formation during the early oscillations of the flat directions. These oscillations are triggered by the running of soft stemming from the nonzero energy density of the Universe. However, this is quite different from the standard -ball formation. The running in presence of gauge and Yukawa couplings becomes strong if is sufficiently large. Moreover, the -balls which are formed during the early oscillations constantly evolve, due to the redshift of the Hubble-induced soft mass, until the low-energy supersymmtery breaking becomes dominant. For smaller , -balls are not formed during early oscillations because of the shrinking of the instability band due to the Hubble expansion. In this case the -balls are formed only at the weak scale, but typically carry smaller charges, as a result of their amplitude redshift. Therefore, the Hubble-induced corrections to the flat directions give rise to a successful -ball cosmology.
7 revtex pages, few references corrected and added, final version to appear in Phys. Rev. D
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Cited by in corpus (11)
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