Perturbation Theory Remixed: Improved Nonlinearity Modeling beyond Standard Perturbation Theory

Abstract

We present a novel nEPT (nth-order Eulerian Perturbation Theory) scheme to model the nonlinear density field by the summation up to nth-order density fields in perturbation theory. The obtained analytical power spectrum shows excellent agreement with the results from all 20 Dark-Quest suites of N-body simulations spreading over a broad range of cosmologies. The agreement is much better than the conventional two-loop Standard Perturbation Theory and would reach out to k max 0.4~h/ Mpc at z=3 for the best-fitting Planck cosmology, without any free parameters. The method can accelerate the forward modeling of the non-linear cosmological density field, an indispensable probe of cosmic mysteries such as inflation, dark energy, and dark matter.

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