arXiv · 1203.4261
Lagrangian perturbations and the matter bispectrum II: the resummed one-loop correction to the matter bispectrum
Abstract
This is part two in a series of papers in which we investigate an approach based on Lagrangian perturbation theory (LPT) to study the non-linear evolution of the large-scale structure distribution in the universe. Firstly, we compute the matter bispectrum in real space using LPT up one-loop order, for both Gaussian and non-Gaussian initial conditions. In the initial position limit, we find that the one-loop bispectrum computed in this manner is identical to its counterpart obtained from standard Eulerian perturbation theory (SPT). Furthermore, the LPT formalism allows for a simple reorganisation of the perturbative series corresponding to the resummation of an infinite series of perturbations in SPT. Applying this method, we find a resummed one-loop bispectrum that compares favourably with results from N-body simulations. We generalise the resummation method also to the computation of the redshift-space bispectrum up to one loop.
Explore related subjects
Keep this discovery
Cornelius Rampf, Yvonne Y. Y. Wong. 2012-06-14. Lagrangian perturbations and the matter bispectrum II: the resummed one-loop correction to the matter bispectrum. https://doi.org/10.1088/1475-7516%2F2012%2F06%2F018
Cite the original work for its findings. Save a collection to share your selection of sources.