Consistent and simultaneous modelling of galaxy clustering and galaxy-galaxy lensing with Subhalo Abundance Matching
arXiv:2211.11745 · doi:10.1093/mnras/stad122
Abstract
The spatial distribution of galaxies and their gravitational lensing signal offer complementary tests of galaxy formation physics and cosmology. However, their synergy can only be fully exploited if both probes are modelled accurately and consistently. In this paper, we demonstrate that this can be achieved using an extension of Subhalo Abundance Matching, dubbed SHAMe. Specifically, we use mock catalogues built from the TNG300 hydrodynamical simulation to show that SHAMe can simultaneously model the multipoles of the redshift-space galaxy correlation function and galaxy-galaxy lensing, without noticeable bias within the statistical sampling uncertainties of a SDSS volume and on scales r = [0.6-30] Mpc/h. Modelling the baryonic processes in galaxy-galaxy lensing with a baryonification scheme allows SHAMe's range of validity to be extended to r = [0.1-30] Mpc/h. Remarkably, our model achieves this level of precision with just five free parameters beyond those describing the baryonification model. At fixed cosmology, we find that galaxy-galaxy lensing provides a general consistency test but little additional information on galaxy modelling parameters beyond that encoded in the redshift-space multipoles. It does, however, improve constraints if only the projected correlation function is available, as in surveys with only photometric redshifts. We expect SHAMe to have a higher fidelity across a wider range of scales than more traditional methods such as Halo Occupation Distribution modelling. Thus it should provide a significantly more powerful and more robust tool for analysing next-generation large-scale surveys.
14 pages, 7 figures. Accepted by MNRAS
References in corpus (29)
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- The hierarchical formation of the brightest cluster galaxies
- Properties of galaxies reproduced by a hydrodynamic simulation
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- Introducing the Illustris Project: the evolution of galaxy populations across cosmic time
- KiDS-1000 Cosmology: Cosmic shear constraints and comparison between two point statistics
- KiDS-1000 Cosmology: Multi-probe weak gravitational lensing and spectroscopic galaxy clustering constraints
- The Illustris simulation: the evolving population of black holes across cosmic time
- Dark Energy Survey Year 3 Results: Cosmology from Cosmic Shear and Robustness to Data Calibration
- Dark Energy Survey Year 3 Results: Cosmology from Cosmic Shear and Robustness to Modeling Uncertainty
- Assembly bias in the clustering of dark matter haloes
- Halo assembly bias and its effects on galaxy clustering
- Lensing is Low: Cosmology, Galaxy Formation, or New Physics?
- The BACCO Simulation Project: Exploiting the full power of large-scale structure for cosmology
- Effects of AGN feedback on LCDM galaxies
- The Weak Lensing Signal and the Clustering of BOSS Galaxies II: Astrophysical and Cosmological Constraints
- L-GALAXIES 2020: Spatially resolved cold gas phases, star formation and chemical enrichment in galactic discs
- The cosmology dependence of galaxy clustering and lensing from a hybrid -body-perturbation theory model
- A flexible modelling of galaxy assembly bias
- A flexible subhalo abundance matching model for galaxy clustering in redshift space
- Extensions to models of the galaxy-halo connection
- Simultaneous modelling of matter power spectrum and bispectrum in the presence of baryons
- Massive Dark Matter Halos around Bright Isolated Galaxies in the 2dFGRS
- Priors on Lagrangian bias parameters from galaxy formation modelling
- Validating a minimal galaxy bias method for cosmological parameter inference using HSC-SDSS mock catalogs
- The evolution of the galaxy content of dark matter haloes
- Surrogate modelling the Baryonic Universe II: on forward modelling the colours of individual and populations of galaxies
- Joint galaxy-galaxy lensing and clustering constraints on galaxy formation
- Galaxy assembly bias and large-scale distribution: a comparison between IllustrisTNG and a semi-analytic model
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- DES Y3 cosmic shear down to small scales: constraints on cosmology and baryons
- Euclid. V. The Flagship galaxy mock catalogue: a comprehensive simulation for the Euclid mission
- The galaxy formation origin of the lensing is low problem
- SHAMe-SF: Predicting the clustering of star-forming galaxies with an enhanced abundance matching model
- Galaxy Clustering in the Mira-Titan Universe I: Emulators for the redshift space galaxy correlation function and galaxy-galaxy lensing
- The Uchuu-GLAM BOSS and eBOSS LRG lightcones: Exploring clustering and covariance errors
- Investigating the galaxy-halo connection of DESI Emission-Line Galaxies with SHAMe-SF
- Toward Accurate Modeling of Galaxy Clustering on Small Scales: Halo Model Extensions and Lingering Tension
- Baryonification extended to thermal Sunyaev Zeldovich
- Cosmological constraints from galaxy clustering and galaxy-galaxy lensing with extended SubHalo Abundance Matching
- A 1% accurate method to include baryonic effects in galaxy-galaxy lensing models
- Is the large-scale structure traced by the BOSS LOWZ galaxies consistent with ?
- ELGLRG distribution through dark matter halo dynamics