A filament of dark matter between two clusters of galaxies
arXiv:1207.0809 · doi:10.1038/nature11224
Abstract
It is a firm prediction of the concordance Cold Dark Matter (CDM) cosmological model that galaxy clusters live at the intersection of large-scale structure filaments. The thread-like structure of this "cosmic web" has been traced by galaxy redshift surveys for decades. More recently the Warm-Hot Intergalactic Medium (WHIM) residing in low redshift filaments has been observed in emission and absorption. However, a reliable direct detection of the underlying Dark Matter skeleton, which should contain more than half of all matter, remained elusive, as earlier candidates for such detections were either falsified or suffered from low signal-to-noise ratios and unphysical misalignements of dark and luminous matter. Here we report the detection of a dark matter filament connecting the two main components of the Abell 222/223 supercluster system from its weak gravitational lensing signal, both in a non-parametric mass reconstruction and in parametric model fits. This filament is coincident with an overdensity of galaxies and diffuse, soft X-ray emission and contributes mass comparable to that of an additional galaxy cluster to the total mass of the supercluster. Combined with X-ray observations, we place an upper limit of 0.09 on the hot gas fraction, the mass of X-ray emitting gas divided by the total mass, in the filament.
Nature, in press
References in corpus (6)
- Baryons at the Edge of the X-ray Brightest Galaxy Cluster
- Bayesian Galaxy Shape Measurement for Weak Lensing Surveys -I. Methodology and a Fast Fitting Algorithm
- Detection of hot gas in the filament connecting the clusters of galaxies Abell 222 and Abell 223
- Bayesian Galaxy Shape Measurement for Weak Lensing Surveys -II. Application to Simulations
- The dark matter environment of the Abell 901/902 supercluster: a weak lensing analysis of the HST STAGES survey
- Weak lensing study of dark matter filaments and application to the binary cluster A 222 and A 223
Cited by in corpus (37)
- Science objectives of the Einstein Probe mission
- The Abell 3391/95 galaxy cluster system: A 15 Mpc intergalactic medium emission filament, a warm gas bridge, infalling matter clumps, and (re-) accelerated plasma discovered by combining SRG/eROSITA data with ASKAP/EMU and DECam data
- Galaxy filaments as pearl necklaces
- Cosmological constraints from Subaru weak lensing cluster counts
- Modelling the Transfer Function for the Dark Energy Survey
- CosmoGridV1: a simulated CDM theory prediction for map-level cosmological inference
- On the nature of dark energy: the lattice Universe
- The Largest Gravitationally Bound Structures: The Corona Borealis Supercluster - Mass and Bound Extent
- Motion of spinning particles around black hole in a dark matter halo
- A black box for dark sector physics: Predicting dark matter annihilation feedback with conditional GANs
- A hot X-ray filament associated with A3017 galaxy cluster
- Weak-Lensing Detection of Intracluster Filaments in the Coma Cluster
- A detailed study of the bridge of excess X-ray emission between the galaxy clusters Abell 2029 and Abell 2033
- The distribution of dark matter and gas spanning six megaparsecs around the post-merger galaxy cluster MS0451-03
- and observations of a newly-discovered early-stage cluster merger 1E2216.0-0401 and 1E2215.7-0404
- Shapley Supercluster Survey: mapping the dark matter distribution
- Galaxy motions in the Bootes strip
- Multi wavelength cross-correlation analysis of the simulated cosmic web
- Close galaxy pairs with accurate photometric redshifts
- A New Dynamical Mass Measurement for the Virgo Cluster using the Radial Velocity Profile of the Filament Galaxies
- Distinctive GWBs from eccentric inspiraling SMBH binaries with a DM spike
- Statistical properties of filaments in weak gravitational lensing
- A Universal Profile for Stacked Filaments from Cold Dark Matter Simulations
- Influence of dark matter on black hole scalar hair
- The PAU Survey: Close galaxy pairs identification and analysis
- Bayesian Cosmic Web Reconstruction: BARCODE for Clusters
- Assessing the influence of one astronomy camp over 50 years
- Probing Self-Interacting Dark Matter via Gravitational-Wave Background from Eccentric Supermassive Black Hole Mergers
- Morphology of relaxed and merging galaxy clusters. Analytical models for monolithic Minkowski functionals
- Galaxy Superclusters and Their Complexes in the Cosmic Web
- Mapping dark matter and finding filaments: calibration of lensing analysis techniques on simulated data
- Lagrangian Volume Deformations around Simulated Galaxies
- Evolution of Cluster Alignments as Evidence of Large-scale Structure Formation in the Universe
- Pearls on a string: Dark and bright galaxies on a strikingly straight and narrow filament
- Graviton spectrum in simplified Dark Matter models with graviton mediators in the de Sitter space
- Dark Energy Survey Year 3 results: Cosmology with peaks using an emulator approach
- The thermodynamic structure and large-scale structure filament in MACS J0717.5+3745