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Revisiting stochastic inflation with perturbation theory

Published 29 Nov 2023 in hep-th, astro-ph.CO, and hep-ph | (2311.17644v2)

Abstract: A long-standing problem within the study of cosmic inflation consists in fully reconciling the stochastic approach with perturbation theory. A complete connection between both formalisms has remained elusive even in the simple case of a single scalar field with self-interactions determined by an arbitrary potential, in a fixed de Sitter background. Using perturbation theory, we compute the one-point probability density function for primordial fluctuations valid to first order in the potential. We examine under which conditions our solution respects the Fokker-Planck equation encountered within the stochastic approach. We identify discrepancies and elucidate their origins, allowing us to shed light on the status of the stochastic formalism.

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