Tiny galaxies and dark substructures: exploring the "dark" subhaloes in TNG50
arXiv:2506.09122 · doi:10.1093/mnras/stag385
Abstract
Dark matter haloes and subhaloes that host no luminous counterpart are predicted within our current understanding of galaxy formation within a CDM paradigm. Observational tests, such as gravitational lensing, have made potential detections of such objects around individual galaxies as well as in galaxy groups and clusters. The question of whether or not a dim counterpart might reside in these objects remains an open question. We investigate this point using the TNG50-1 simulation of the IllustrisTNG project. Under the assumption of TNG50's galaxy formation model, we do not find haloes or subhaloes above a total mass of that are entirely dark. However, under realistic effective surface brightness cuts of , the inference of the most massive dark subhalo in galaxy groups and clusters becomes . Concentrating on galaxy groups and clusters, we find that dark subhaloes are ubiquitous with more massive dark subhaloes tending to preferentially reside further from the centers of clusters. We find that subhaloes in the mass range of tend to be the most likely to reside in the strong lensing regions of galaxy groups and clusters, and argue that future dark subhalo searches should investigate this mass range.
8 pages, 5 figures (including appendix); submitted to MNRAS; comments welcome
References in corpus (86)
- SciPy 1.0--Fundamental Algorithms for Scientific Computing in Python
- Array Programming with NumPy
- Planck 2015 results. XIII. Cosmological parameters
- The Gaia mission
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Populating a cluster of galaxies - I. Results at z=0
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- First results from the IllustrisTNG simulations: matter and galaxy clustering
- Ellipsoidal collapse and an improved model for the number and spatial distribution of dark matter haloes
- First results from the IllustrisTNG simulations: the stellar mass content of groups and clusters of galaxies
- First results from the IllustrisTNG simulations: the galaxy color bimodality
- Small-Scale Challenges to the CDM Paradigm
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- First results from the IllustrisTNG simulations: A tale of two elements -- chemical evolution of magnesium and europium
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- First results from the IllustrisTNG simulations: radio haloes and magnetic fields
- Introducing the Illustris Project: the evolution of galaxy populations across cosmic time
- Substructures in hydrodynamical cluster simulations
- First Results from the TNG50 Simulation: Galactic outflows driven by supernovae and black hole feedback
- First Results from the TNG50 Simulation: The evolution of stellar and gaseous disks across cosmic time
- Reionization and the abundance of galactic satellites
- Cluster Lensing And Supernova survey with Hubble (CLASH): An Overview
- The Connection between Galaxies and their Dark Matter Halos
- The merger rate of galaxies in the Illustris Simulation: a comparison with observations and semi-empirical models
- The ACS Virgo Cluster Survey. XIII. SBF Distance Catalog and the Three-Dimensional Structure of the Virgo Cluster
- Galaxy Clusters Discovered via the Sunyaev-Zel'dovich Effect in the 2500-square-degree SPT-SZ survey
- Accurate masses for dispersion-supported galaxies
- The subhalo populations of LCDM dark haloes
- The Frontier Fields: Survey Design
- The Faintest Dwarf Galaxies
- Dark Matter Halos within Clusters
- The Effects of Photoionization on Galaxy Formation - I: Model and Results at z=0
- Gravitational detection of a low-mass dark satellite at cosmological distance
- Simulations of magnetic fields in isolated disk galaxies
- Detection of lensing substructure using ALMA observations of the dusty galaxy SDP.81
- Disruption of Dark Matter Substructure: Fact or Fiction?
- Detection of a Dark Substructure through Gravitational Imaging
- Magnetohydrodynamics on an unstructured moving grid
- The Photo-Evaporation of Dwarf Galaxies During Reionization
- The Radial Distribution of Galaxies in LCDM clusters
- The FLAMINGO project: cosmological hydrodynamical simulations for large-scale structure and galaxy cluster surveys
- Galactic Searches for Dark Matter
- Substructure and dynamics of the Fornax Cluster
- Convergence and scatter of cluster density profiles
- RELICS: Reionization Lensing Cluster Survey
- Inference of the Cold Dark Matter substructure mass function at z=0.2 using strong gravitational lenses
- Milky Way Satellite Census. II. Galaxy--Halo Connection Constraints Including the Impact of the Large Magellanic Cloud
- The Spur and the Gap in GD-1: Dynamical evidence for a dark substructure in the Milky Way halo
- Clumpy Streams from Clumpy Halos: Detecting Missing Satellites with Cold Stellar Structures
- Modeling the disruption of the globular cluster Pal5 by Galactic tides
- Dynamical Evolution of Galaxies in Clusters
- The chosen few: the low mass halos that host faint galaxies
- The abundance of (not just) dark matter haloes
- Dark Matter Sub-Halo Counts via Star Stream Crossings
- An Atlas of MUSE Observations towards Twelve Massive Lensing Clusters
- Hubble Frontier Fields : A High Precision Strong Lensing Analysis of Galaxy Cluster MACSJ0416.1-2403 using ~200 Multiple Images
- Detection of substructure with adaptive optics integral field spectroscopy of the gravitational lens B1422+231
- A unified model for the spatial and mass distribution of subhaloes
- The Relationship between Galaxy and Dark Matter Halo Size from z~3 to the present
- Frontier Fields: High-Redshift Predictions and Early Results
- Dark matter under the microscope: Constraining compact dark matter with caustic crossing events
- The detailed structure and the onset of galaxy formation in low-mass gaseous dark matter haloes
- The radial distribution of galaxies in groups and clusters
- The Preferential Tidal Stripping of Dark Matter versus Stars in Galaxies
- COSMOS2020: The cosmic evolution of the stellar-to-halo mass relation for central and satellite galaxies up to z~5
- Quantifying scatter in galaxy formation at the lowest masses
- Going, going, gone dark: Quantifying the scatter in the faintest dwarf galaxies
- Dwarf galaxy populations in present-day galaxy clusters: I. Abundances and red fractions
- Strong Lens Models for 37 Clusters of Galaxies from the SDSS Giant Arcs Survey
- COSMOS-Web: stellar mass assembly in relation to dark matter halos across of cosmic history
- On the Segregation of Dark Matter Substructure
- Dark and luminous satellites of LMC-mass galaxies in the FIRE simulations
- Rhapsody. II. Subhalo Properties and the Impact of Tidal Stripping From a Statistical Sample of Cluster-Size Halos
- JWST's PEARLS: Mothra, a new kaiju star at z=2.091 extremely magnified by MACS0416, and implications for dark matter models
- Dark matter stripping in galaxy clusters: a look at the Stellar to Halo Mass relation in the Illustris simulation
- Forecasts for Galaxy Formation and Dark Matter Constraints from Dwarf Galaxy Surveys
- EDGE: The emergence of dwarf galaxy scaling relations from cosmological radiation-hydrodynamics simulations
- Low X-ray Luminosity Galaxy Clusters. III: Weak Lensing Mass Determination at 0.18 z 0.70
- RXJ0437+00: Constraining Dark Matter with Exotic Gravitational Lenses
- The Impact of Molecular Hydrogen Cooling on the Galaxy Formation Threshold
- Galactic satellite systems in CDM, WDM and SIDM
- Confronting the Diversity Problem: The Limits of Galaxy Rotation Curves as a tool to Understand Dark Matter Profiles
- EDGE: Predictable Scatter in the Stellar Mass--Halo Mass Relation of Dwarf Galaxies
- Strong LensIng and Cluster Evolution (SLICE) with JWST: Early Results, Lens Models, and High-Redshift Detections
- JWST's GLIMPSE: an overview of the deepest probe of early galaxy formation and cosmic reionization
- Euclid Quick Data Release (Q1). The first catalogue of strong-lensing galaxy clusters