Constructing Regularized Cosmic Propagators
arXiv:1112.3895 · doi:10.1103/PhysRevD.85.123519
Abstract
We present a new scheme for the general computation of cosmic propagators that allow to interpolate between standard perturbative results at low-k and their expected large-k resummed behavior. This scheme is applicable to any multi-point propagator and allows the matching of perturbative low-k calculations to any number of loops to their large-k behavior, and can potentially be applied in case of non-standard cosmological scenarios such as those with non-Gaussian initial conditions. The validity of our proposal is checked against previous prescriptions and measurements in numerical simulations showing a remarkably good agreement. Such a generic prescription for multi-point propagators provides the necessary building blocks for the computation of polyspectra in the context of the so-called Gamma-expansion introduced by Bernardeau et al. (2008). As a concrete application we present a consistent calculation of the matter bispectrum at one-loop order.
21 pages, 14 figures. v2: corrections in response to referee report
References in corpus (16)
- Transients from Initial Conditions in Cosmological Simulations
- Resumming Cosmological Perturbations via the Lagrangian Picture: One-loop Results in Real Space and in Redshift Space
- Generation of Vorticity and Velocity Dispersion by Orbit Crossing
- Flowing with Time: a New Approach to Nonlinear Cosmological Perturbations
- Multi-Point Propagators in Cosmological Gravitational Instability
- A Closure Theory for Non-linear Evolution of Cosmological Power Spectra
- Nonlinear Perturbation Theory Integrated with Nonlocal Bias, Redshift-space Distortions, and Primordial Non-Gaussianity
- Coarse-Grained Cosmological Perturbation Theory
- Resummed propagators in multi-component cosmic fluids with the eikonal approximation
- Cosmological structure formation with clustering quintessence
- Chasing the non-linear evolution of matter power spectrum with numerical resummation method: solution of closure equations
- Next-to-leading resummation of cosmological perturbations via the Lagrangian picture: 2-loop correction in real and redshift spaces
- Multi-Point Propagators for Non-Gaussian Initial Conditions
- Propagators in Lagrangian space
- Next-to-leading resummations in cosmological perturbation theory
- Cosmological Large-scale Structures beyond Linear Theory in Modified Gravity
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