4.7 Article

Trapping effects on inflation

期刊

PHYSICAL REVIEW D
卷 84, 期 6, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.84.063527

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  1. National Science Council, Taiwan, ROC [NSC97-2112-M-003-004-MY3, NSC98-2112-M-001-009-MY3, NSC99-2112-M-031-002-MY3]

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We develop a Lagrangian approach based on the influence functional method so as to derive self-consistently the Langevin equation for the inflaton field in the presence of trapping points along the inflaton trajectory. The Langevin equation exhibits the backreaction and the fluctuation-dissipation relation of the trapping. The fluctuation is induced by a multiplicative colored noise that can be identified as the particle number density fluctuations; and the dissipation is a new effect that may play a role in the trapping with a strong coupling. In the weak coupling regime, we calculate the power spectrum of the noise-driven inflaton fluctuations for a single trapping point and studied its variation with the trapping location. We also consider a case with closely spaced trapping points and find that the resulting power spectrum is blue.

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