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We compute the renormalization group flow of O(N) scalar field theories in de Sitter space using nonperturbative renormalization group techniques in the local potential approximation. We obtain the flow of the effective potential on superhorizon scales for arbitrary space–time dimension D=d+1. We show that, due to strong infrared fluctuations, the latter is qualitatively similar to the corresponding one in Euclidean space RD with D=0. It follows that spontaneously broken symmetries are radiatively restored in any space–time dimension and for any value of N.
Julien Serreau (Fri,) studied this question.
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