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arXiv:hep-ph/9303269·v1·High Energy Physics — Phenomenology

Finite temperature effective action and thermalization of perturbations

Per Elmfors🇸🇪 · Kari Enqvist🇸🇪 · Iiro Vilja🇸🇪

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Abstract

The effective action is computed for the \lphi--theory at finite temperature for small perturbations about a constant background field, using a generalized tadpole method. We find the complete effective action, including the real and imaginary parts, to all orders in derivatives and to order . We demonstrate that the high approximation, where only the zero Matsubara frequency is included, is incorrect for the imaginary part even though it is UV-finite. The solutions of the dispersion relations show that initial perturbations do not necessarily thermalize fast enough to be absent at the onset of phase transition.

Comments: 25 pages, plain TEX, 7 figures not included, NORDITA 93/22 P

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