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Weak-Lensing Detection of Intercluster Filaments in Three Nearby Cluster Systems
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Weak-Lensing Detection of Intercluster Filaments in Three Nearby Cluster Systems
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Direct detection of intercluster filaments is challenging due to their low surface density, resulting in a weak deflection field. We present weak-lensing detections of intercluster filaments using wide-field Dark Energy Camera (DECam) observations from the Local Volume Complete Cluster Survey (LoVoCCS). A matched-filter method was applied to identify filamentary structures in three nearby ($z < 0.1$) systems centered on Abell 401, Abell 2029, and Abell 3558. We discover two prominent filaments ($\geq 4\sigma$) in each system, with the strongest detections ($6.4\sigma - 7.3\sigma$) around Abell 401 and Abell 2029. In particular, we report the first robust weak-lensing detections $(>5 \sigma)$ of the intercluster bridges connecting the cluster pairs Abell 401/399, Abell 2029/2033, Abell 2029/SIG, and Abell 3558/3556. Adopting a filament convergence model motivated by numerical simulations, we infer the maximum convergence ($\kappa_0$) and characteristic width ($h_{\mathrm{c}}$) for all six filaments, yielding $\kappa_0 \sim 0.015 - 0.053$ and $h_{\mathrm{c}} \sim 0.11 - 0.45 \ \mathrm{Mpc}$. The performance of the matched-filter technique is validated using mock shear catalogs and further tested on a null field around Abell 2351. We also explore the potential of using the B-mode lensing signal of filaments to suppress cluster-induced shear contamination. These results demonstrate the feasibility of directly mapping dark matter filaments with current and future wide-field weak-lensing datasets.
Forward citations
Cited by 2 Pith papers
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A new LSST-pipeline-based reduction and multi-plane weak-lensing analysis measures the Hercules supercluster at 8.9 x 10^14 solar masses and attributes Abell 2147's inflated dynamical mass to a recent pericenter passage.
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Weak-lensing Analysis of Intracluster Filaments in Abell 2744: Matched-filter Scans and Stepwise 2D Tracing
A new stepwise 2D tracing method resolves inconsistencies in weak-lensing detection of curved intracluster filaments in Abell 2744 that global matched-filter scans cannot handle.
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