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Morphological fractions of galaxies in WINGS clusters: revisiting the morphology-density paradigm

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posted on 2024-08-06, 09:50 authored by G. Fasano, B. M. Poggianti, D. Bettoni, M. D'Onofrio, A. Dressler, B. Vulcani, A. Moretti, M. Gullieuszik, J. Fritz, A. Omizzolo, A. Cava, Warrick CouchWarrick Couch, M. Ramella, A. Biviano
We present the Morphology-Density and Morphology-Radius relations (T-Sigma and T-R, respectively) obtained from the WINGS database of galaxies in nearby clusters. Aiming to achieve the best statistics, we exploit the whole sample of galaxies brighter than MV=-19.5 (5,504 objects), stacking up the 76 clusters of the WINGS survey altogether. Using this global cluster sample, we find that the T-Sigma relation holds only in the inner cluster regions (R<1/3xR200), while the T-R relation keeps almost unchanged over the whole range of local density. A couple of tests and two sets of numerical simulations support the robustness of these results against the effects of the limited cluster area coverage of the WINGS imaging. The above mentioned results hold for all cluster masses (X-ray luminosity and velocity dispersion) and all galaxy stellar masses (M). The strength of the T-Sigma relation (where present) increases with increasing M, while this effect is not found for the T-R relation. Noticeably, the absence/presence of subclustering determines the presence/absence of the T-Sigma relation outside the inner cluster regions, leading us to the general conclusion that the link between morphology and local density is preserved just in dynamically evolved regions. We hypothesize that some mechanism of morphological broadening/redistribution operates in the intermediate/outer regions of substructured (non relaxed) clusters, producing a strong weakening of the T-Sigma relation.

Funding

Japan Society for the Promotion of Science

Ministry of Education, Universities and Research

History

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ISSN

0035-8711

Journal title

Monthly Notices of the Royal Astronomical Society

Volume

449

Issue

4

Pagination

17 pp

Publisher

Oxford University Press

Copyright statement

Copyright © 2015. This article has been accepted for publication in the Monthly Notices of the Royal Astronomical Society ©: 2015 The authors. Published by Oxford University Press on behalf of the Royal Astronomical Society.

Language

eng

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