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arxiv: 1701.09088 · v1 · pith:L3QFDF6Onew · submitted 2017-01-31 · 🌌 astro-ph.CO

Post-collapse perturbation theory in 1D cosmology -- beyond shell-crossing

classification 🌌 astro-ph.CO
keywords post-collapseshell-crossingadaptiveflowperturbationsmoothingcosmologicaldovich
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We develop a new perturbation theory (PT) treatment that can describe gravitational dynamics of large-scale structure after shell-crossing in the one-dimensional cosmological case. Starting with cold initial conditions, the motion of matter distribution follows at early stages the single-stream regime, which can, in one dimension, be described exactly by the first-order Lagrangian perturbation, i.e. the Zel'dovich solution. However, the single-stream flow no longer holds after shell-crossing and a proper account of the multi-stream flow is essential for post-collapse dynamics. In this paper, extending previous work by Colombi (2015, MNRAS 446, 2902), we present a perturbative description for the multi-stream flow after shell-crossing in a cosmological setup. In addition, we introduce an adaptive smoothing scheme to deal with the bulk properties of phase-space structures. The filtering scales in this scheme are linked to the next-crossing time in the post-collapse region, estimated from our PT calculations. Our PT treatment combined with adaptive smoothing is illustrated in several cases. Predictions are compared to simulations and we find that post-collapse PT with adaptive smoothing reproduces the power spectrum and phase-space structures remarkably well even at small scales, where Zel'dovich solution substantially deviates from simulations.

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Cited by 1 Pith paper

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  1. Post-collapse Lagrangian perturbation theory in three dimensions

    astro-ph.CO 2025-09 unverdicted novelty 7.0

    The authors introduce post-collapse Lagrangian perturbation theory (PCPT) that asymptotically captures early post-shell-crossing dynamics in 3D by using high-order LPT until crossing and then 1D pancake results for gr...