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dc.contributor.authorChoudhury, Sayantan
dc.contributor.authorKarde, Ahaskar
dc.contributor.authorPadiyar, Pankaj
dc.contributor.authorSami, M.
dc.date.accessioned2026-03-12T05:16:21Z
dc.date.available2026-03-12T05:16:21Z
dc.date.issued2025
dc.identifier.issn1434-6052
dc.identifier.otherdoi.org/10.1140/epjc/s10052-024-13644-2
dc.identifier.urihttp://repository.enu.kz/handle/enu/30182
dc.description.abstractWe present a study of the Effective Field Theory (EFT) generalization of stochastic inflation in a modelindependent single-field framework and its impact on primordial black hole (PBH) formation. We show how the Langevin equations for the “soft” modes in quasi de Sitter background is described by the Infra-Red (IR) contributions of scalar perturbations, and the subsequent Fokker–Planck equation driving the probability distribution for the stochastic duration N , significantly modify in the present EFT picture. An explicit perturbative analysis of the distribution function by implementing the stochastic-δN formalism is performed up to the next-to-next-to-next-to-leading order (NNNLO) for both the classical-drift and quantum-diffusion dominated regimes. In the drift-dominated limit, we perturbatively analyse the local non-Gaussianity parameters ( fNL, gNL, τNL) with the EFTinduced modifications. In the diffusion-dominated limit, we numerically compute the probability distribution featuring exponential tails at each order of perturbative treatment.ru
dc.language.isoenru
dc.publisherEurasian Physical Journal Cru
dc.relation.ispartofseries85:21;
dc.titlePrimordial black holes from effective field theory of stochastic single field inflation at NNNLOru
dc.typeArticleru


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