The probability of galaxy-galaxy strong lensing events in hydrodynamical simulations of galaxy clusters
arXiv:2204.09065 · doi:10.1051/0004-6361/202243779
Abstract
Meneghetti et al. (2020) recently reported an excess of galaxy-galaxy strong lensing (GGSL) in galaxy clusters compared to expectations from the LCDM cosmological model. Theoretical estimates of the GGSL probability are based on the analysis of numerical hydrodynamical simulations in the LCDM cosmology. We quantify the impact of the numerical resolution and AGN feedback scheme adopted in cosmological simulations on the predicted GGSL probability and determine if varying these simulation properties can alleviate the gap with observations. We repeat the analysis of Meneghetti et al. (2020) on cluster-size halos simulated with different mass and force resolutions and implementing several independent AGN feedback schemes. We find that improving the mass resolution by a factor of ten and twenty-five, while using the same galaxy formation model that includes AGN feedback, does not affect the GGSL probability. We find similar results regarding the choice of gravitational softening. On the contrary, adopting an AGN feedback scheme that is less efficient at suppressing gas cooling and star formation leads to an increase in the GGSL probability by a factor between three and six. However, we notice that such simulations form overly massive subhalos whose contribution to the lensing cross-section would be significant while their Einstein radii are too large to be consistent with the observations. The primary contributors to the observed GGSL cross-sections are subhalos with smaller masses, that are compact enough to become critical for lensing. The population with these required characteristics appears to be absent in simulations.
13 pages, 11 figures. Submitted for publication on Astronomy and Astrophysics
References in corpus (27)
- A Bayesian approach to strong lensing modelling of galaxy clusters
- Chemical enrichment of galaxy clusters from hydrodynamical simulations
- Disruption of Dark Matter Substructure: Fact or Fiction?
- Combining Strong and Weak Gravitational Lensing in Abell 1689
- CLASH: Weak-Lensing Shear-and-Magnification Analysis of 20 Galaxy Clusters
- Cluster Lenses
- Mass and magnification maps for the Hubble Space Telescope Frontier Fields clusters: implications for high redshift studies
- Multi-scale cluster lens mass mapping I. Strong Lensing modelling
- CLASH: The Concentration-Mass Relation of Galaxy Clusters
- A refined sub-grid model for black hole accretion and AGN feedback in large cosmological simulations
- CLASH-VLT: Insights on the mass substructures in the Frontier Fields Cluster MACS J0416.1-2403 through accurate strong lens modeling
- The Population of Dark Matter Subhaloes: Mass Functions and Average Mass Loss Rates
- An excess of small-scale gravitational lenses observed in galaxy clusters
- The survival of dark matter halos in the cluster Cl0024+16
- Strong Lensing in Abell 1703: Constraints on the Slope of the Inner Dark Matter Distribution
- MUSE integral-field spectroscopy towards the Frontier Fields Cluster Abell S1063: I. Data products and redshift identifications
- Substructure in lensing clusters and simulations
- Mass distribution in the core of MACS J1206: robust modeling from an exceptionally large sample of central multiple images
- The MUSE Deep Lensed Field on the Hubble Frontier Field MACS~J0416
- Disruption of satellite galaxies in simulated groups and clusters: the roles of accretion time, baryons, and pre-processing
- The DIANOGA simulations of galaxy clusters: characterizing star formation in proto-clusters
- A new high-precision strong lensing model of the galaxy cluster MACS J0416.1-2403
- CLASH-VLT: Abell~S1063. Cluster assembly history and spectroscopic catalogue
- Constraining the galaxy mass content in the core of A383 using velocity dispersion measurements for individual cluster members
- CLASH: Extending galaxy strong lensing to small physical scales with distant sources highly-magnified by galaxy cluster members
- Numerical simulations challenged on the prediction of massive subhalo abundance in galaxy clusters: the case of Abell 2142
- The galaxy-galaxy strong lensing cross-sections of simulated LCDM galaxy clusters
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- Euclid. I. Overview of the Euclid mission
- Primordial Black Holes
- New high-precision strong lensing modeling of Abell 2744. Preparing for JWST observations
- A persistent excess of galaxy-galaxy strong lensing observed in galaxy clusters
- A state-of-the-art strong lensing model of MACS J0416.1-2403 with the largest sample of spectroscopic multiple images
- Dianoga SIDM: galaxy cluster self-interacting dark matter simulations
- A MUSE view of the massive merging galaxy cluster ACT-CL J0102-4915 (El Gordo) at z = 0.87: robust strong lensing model and data release
- Numerical Challenges in Modeling Gravothermal Collapse in Self-Interacting Dark Matter Halos
- The Three Hundred Project: the evolution of physical baryon profiles
- Self-Interacting Dark Matter, Core Collapse and the Galaxy-Galaxy Strong Lensing Discrepancy
- Euclid Preparation XXXIII. Characterization of convolutional neural networks for the identification of galaxy-galaxy strong lensing events
- Properties and observables of massive galaxies in self-interacting dark matter cosmologies
- Exploring the low-mass regime of galaxy-scale strong lensing: Insights into the mass structure of cluster galaxies
- Subhalo effective density slope measurements from HST strong lensing data with neural likelihood-ratio estimation
- HOLISMOKES XIII: Strong-lens candidates at all mass scales and their environments from the Hyper-Suprime Cam and deep learning
- Improved model of the Supernova Refsdal cluster MACS J1149.5+2223 thanks to VLT/MUSE
- Accurate Measurement of the Lensing Magnification by BOSS CMASS Galaxies and Its Implications for Cosmology and Dark Matter
- Searching for galaxy-scale strong-lenses in galaxy clusters with deep networks -- I: methodology and network performance
- Detecting Low-Mass Perturbers in Cluster Lenses using Curved Arc Bases
- El Gordo needs El Anzuelo: Probing the structure of cluster members with multi-band extended arcs in JWST data
- The powerful lens galaxy cluster PLCK G287.0+32.9 ()
- The Three Hundred: relation
- A Universal Analytic Model for Gravitational Lensing by Self-Interacting Dark Matter Halos
- New Cold Dark Matter Crisis Revealed by Multiscale Cluster Lensing
- The spherical Fast Multipole Method (sFMM) for Gravitational Lensing Simulation
- Parametric strong lensing model of the galaxy cluster Abell 2390 from Euclid and MUSE observations
- Self-Interacting Dark Matter with Mass Segregation: A Unified Explanation of Dwarf Cores and Small-Scale Lenses
- The velocity dispersion function of red galaxies in four Hubble Frontier Fields galaxy clusters
- Constraining the Nature of Dark Matter from Tidal Radii of Cluster Galaxy Subhalos