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Formation of Topological Defects in a Second Order Phase Transition

Robert H. Brandenberger, Anne-Christine Davis

hep-pharXiv:hep-ph/9403269

Abstract

The classical evolution equations of the Abelian Higgs model are studied at temperatures below the Ginsburg temperature of a phase transition which is assumed to be second order. It is shown that the initial thermal fluctuations provide a domain structure which is stable against late time fluctuations. This result lends support to the Kibble mechanism for the formation of topological defects.

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