The impact of Self-Interacting Dark Matter on the Intrinsic Alignments of Galaxies
arXiv:2104.02093 · doi:10.1093/mnras/stab1741
Abstract
The formation and evolution of galaxies is known to be sensitive to tidal processes leading to intrinsic correlations between their shapes and orientations. Such correlations can be measured to high significance today, suggesting that cosmological information can be extracted from them. Among the most pressing questions in particle physics and cosmology is the nature of dark matter. If dark matter is self-interacting, it can leave an imprint on galaxy shapes. In this work, we investigate whether self-interactions can produce a long-lasting imprint on intrinsic galaxy shape correlations. We investigate this observable at low redshift () using a state-of-the-art suite of cosmological hydro-dynamical simulations where the dark matter model is varied. We find that dark matter self-interactions induce a mass dependent suppression in the intrinsic alignment signal by up to 50\% out to ten's of mega-parsecs, showing that self-interactions can impact structure outside the very core of clusters. We find evidence that self-interactions have a scale-dependent impact on the intrinsic alignment signal that is sufficiently different from signatures introduced by differing baryonic physics prescriptions, suggesting that it is detectable with up-coming all-sky surveys.
Accepted MNRAS
References in corpus (16)
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- Dark energy constraints from cosmic shear power spectra: impact of intrinsic alignments on photometric redshift requirements
- Intrinsic galaxy alignments from the 2SLAQ and SDSS surveys: luminosity and redshift scalings and implications for weak lensing surveys
- Constraints on intrinsic alignment contamination of weak lensing surveys using the MegaZ-LRG sample
- Intrinsic alignments of SDSS-III BOSS LOWZ sample galaxies
- Potential sources of contamination to weak lensing measurements: constraints from N-body simulations
- Constraining Velocity-dependent Self-Interacting Dark Matter with the Milky Way's dwarf spheroidal galaxies
- Velocity-dependent Self-interacting Dark Matter from Groups and Clusters of Galaxies
- The halo model as a versatile tool to predict intrinsic alignments
- Intrinsic alignment of simulated galaxies in the cosmic web: implications for weak lensing surveys
- An EFT description of galaxy intrinsic alignments
- Intrinsic alignments of galaxies in the MassiveBlack-II simulation: analysis of two-point statistics
- Multitracing Anisotropic Non-Gaussianity with Galaxy Shapes
- Advances in Constraining Intrinsic Alignment Models with Hydrodynamic Simulations
- The mass dependence of dark matter halo alignments with large-scale structure
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- HYMALAIA: A Hybrid Lagrangian Model for Intrinsic Alignments
- Sensitivity of Halo Shape Measurements
- A rising tide: Intrinsic alignments since the turn of the millennium
- Comparing the motion of dark matter and standard model particles on cosmological scales
- Intrinsic alignments of the extended radio continuum emission of galaxies in the EAGLE simulations
- The AIDA-TNG project: 3D halo shapes
- Cosmological simulations with rare and frequent dark matter self-interactions
- Three-point intrinsic alignments of galaxies and haloes in the FLAMINGO simulations