Cosmological density fluctuations in stochastic gravity: Formalism and linear analysis

Yuko Urakawa and Kei-ichi Maeda
Phys. Rev. D 77, 024013 – Published 9 January 2008

Abstract

We study primordial perturbations generated from quantum fluctuations of an inflaton based on the formalism of stochastic gravity. Integrating out the degree of freedom of the inflaton field, we analyze the time evolution of the correlation function of the curvature perturbation at tree level and compare it with the prediction made by the gauge-invariant linear perturbation theory. We find that our result coincides with that of the gauge-invariant perturbation theory if the e-folding from the horizon-crossing time is smaller than some critical value (| slow-roll parameter |1), which is the case for the scales of the observed cosmological structures. However, in the limit of the superhorizon scale, we find a discrepancy in the curvature perturbation, which suggests that we should include the longitudinal part of the gravitational field in the quantization of a scalar field even in stochastic gravity.

  • Received 29 October 2007

DOI:https://doi.org/10.1103/PhysRevD.77.024013

©2008 American Physical Society

Authors & Affiliations

Yuko Urakawa1,* and Kei-ichi Maeda1,2,3,†

  • 1Department of Physics, Waseda University, Okubo 3-4-1, Shinjuku, Tokyo 169-8555, Japan
  • 2Advanced Research Institute for Science and Engineering, Waseda University, Okubo 3-4-1, Shinjuku, Tokyo 169-8555, Japan
  • 3Waseda Institute for Astrophysics, Waseda University, Okubo 3-4-1, Shinjuku, Tokyo 169-8555, Japan

  • *yuko_at_gravity.phys.waseda.ac.jp
  • maeda_at_waseda.jp

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Issue

Vol. 77, Iss. 2 — 15 January 2008

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