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arxiv: 1807.05522 · v2 · pith:MUBTWQVYnew · submitted 2018-07-15 · 🌌 astro-ph.CO · gr-qc· hep-th

The first constraint from SDSS galaxy-galaxy weak lensing measurements on interacting dark energy models

classification 🌌 astro-ph.CO gr-qchep-th
keywords darkenergyinteractionlensingweakmeasurementsmodelsnonlinear
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We combine constraints from linear and nonlinear scales, for the first time, to study the interaction between dark matter and dark energy. We devise a novel N-body simulation pipeline for cosmological models beyond $\Lambda$CDM. This pipeline is fully self-consistent and opens a new window to study the nonlinear structure formation in general phenomenological interacting dark energy models. By comparing our simulation results with the SDSS galaxy-galaxy weak lensing measurements, we are able to constrain the strength of interaction between dark energy and dark matter. Compared with the previous studies using linear examinations, we point to plausible improvements on the constraints of interaction strength by using small scale information from weak lensing. This improvement is mostly due to the sensitivity of weak lensing measurements on nonlinear structure formation at low redshift. With this new pipeline, it is possible to look for smoking gun signatures of dark matter-dark energy interaction.

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

  1. Non-linear Structure Formation in Planck+DESI Favoured Interacting Dark Energy Cosmologies

    astro-ph.CO 2026-06 unverdicted novelty 6.0

    N-body simulations of IDE with Q=ξHρ_x show scale-dependent deviations in the matter power spectrum, density morphology, and halo abundance that standard ΛCDM-calibrated prescriptions cannot reproduce.