Searching for signatures of fuzzy dark matter in cosmic filament profiles
Callum J. O'Kane, Alfonso Aragón-Salamanca, Ulrike Kuchner, Meghan E. Gray
astro-ph.CO
Submitted: 2026-07-10
Comments: 12 pages, 5 figures, Accepted for publication in MNRAS
License: http://creativecommons.org/licenses/by/4.0/
The gist: Current observations reveal persistent tensions with the standard cold dark matter paradigm, raising the question of whether these can be explained by baryonic physics alone or require alternative
Terminology
Abstract
Current observations reveal persistent tensions with the standard cold dark matter paradigm, raising the question of whether these can be explained by baryonic physics alone or require alternative dark matter models. One such alternative is fuzzy (or wave) dark matter, consisting of ultralight particles with mass m about 10-22 eV and de Broglie wavelengths on kpc to Mpc scales, which may give rise to large--scale interference patterns in non-linear structures around the cosmic web, such as filaments and clusters. In this work, we search for possible signatures of these interference fringes by investigating periodicities in the distribution of galaxies around cosmic web filaments. To demonstrate our methodology, we compare the filament profiles to a simple model that includes a periodic component of the form A (2 pi d/ lambda), where A is the maximum density contrast (amplitude) of the periodic component, with wavelength lambda= lambda 0 theta for some face-on wavelength lambda 0 inclined at an angle theta to the line of sight. Exploiting the large Sloan Digital Sky Survey (SDSS) Main Galaxy Sample, we analyse a sample of 4,394 filaments from the Tempel et al. filament catalogue, each containing at least 10 member galaxies. We find a vast portion of the parameter space is consistent with the observations at the 2 sigma level, including all models with A = 0 (no periodicity). We identify a region of the parameter space in tension with the observations, allowing us to exclude values of A > 0.16 lambda 0 + 0.18 for 0.2, Mpc, lambda 0 2, Mpc at the 3 sigma level, demonstrating the ability to test models of filament dark matter structure using this methodology.
Sources
- In-situ globular clusters in alternative dark matter Milky Way galaxies: a first approach to fuzzy and core-like dark matter theories
- Cold and fuzzy dark sector
- The DESI Experiment Part I: Science,Targeting, and Survey Design
- Constraints on Dark Matter Models from Supermassive Black Hole Evolution
- Probing Dark Matter Substructure with Image Number Anomaly in Strong Lensing Systems
- Flux-ratio anomalies in cusp quasars reveal dark matter beyond CDM
- The Effective Field Theory of Large Scale Structures of a Fuzzy Dark Matter Universe
- Nearest neighbour analysis as a new probe for fuzzy dark matter
- Constraining fuzzy dark matter with the 21-cm power spectrum from Cosmic Dawn and Reionization
- Joint Constraints on Fuzzy and Warm Dark Matter from Satellite Populations of the Milky Way and Andromeda
- Core-halo scaling relations in self-interacting scalar field dark matter
- Updated bounds on ultra-light dark matter from the tiniest galaxies
- Warm, not Fuzzy: Generalized Ultralight Dark Matter Limits from Milky Way Satellites
- Fuzzy dark matter simulations
- Fuzzy dark matter dynamical friction: stalling of globular clusters induced by dynamical heatings
- Fuzzy dark matter soliton as gravitational lens
- Interference in Fuzzy Dark Matter Filaments: Idealised Models and Statistics
Related papers
- Angular clustering and bias of photometric quasars in the Kilo-Degree Survey Data Release 4
- A Novel kinetic Sunyaev-Zel'dovich Estimator for Electron-Electron Correlations
- Magnetic fields at the dawn of structure formation I. The CARLA J1510+5958 proto-cluster
- Dark Energy Survey Year 6 Results: Weak Lensing and Galaxy Clustering Cosmological Analysis Framework
- Exploring the Impact of Systematic Bias in Type Ia Supernova Cosmology Across Diverse Dark Energy Parametrizations
- Non-Gaussian Galaxy Stochasticity and the Noise-Field Formulation