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Large-scale structure perturbation theory without losing stream crossing

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arxiv 1709.02834 v3 pith:ODTMTWLS submitted 2017-09-08 astro-ph.CO

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keywords crossingstreamapproachcalculationsdisplacementdovichevenimprovement
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We suggest an approach to perturbative calculations of large-scale clustering in the Universe that includes from the start the stream crossing (multiple velocities for mass elements at a single position) that is lost in traditional calculations. Starting from a functional integral over displacement, the perturbative series expansion is in deviations from (truncated) Zel'dovich evolution, with terms that can be computed exactly even for stream-crossed displacements. We evaluate the one-loop formulas for displacement and density power spectra numerically in 1D, finding dramatic improvement in agreement with N-body simulations compared to the Zel'dovich power spectrum (which is exact in 1D up to stream crossing). Beyond 1D, our approach could represent an improvement over previous expansions even aside from the inclusion of stream crossing, but we have not investigated this numerically. In the process we show how to achieve effective-theory-like regulation of small-scale fluctuations without free parameters.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Vlasov Perturbation Theory applied to $\Lambda$CDM

    astro-ph.CO 2025-05 accept novelty 6.0 of 10

    Vlasov Perturbation Theory with a dispersion-scale input predicts the two-loop matter power spectrum in LambdaCDM at percent-level accuracy without EFT-style free parameters.

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