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The Three Hundred Project: The stellar angular momentum evolution of cluster galaxies

Mostoghiu, R.; Knebe, A.; Pearce, F. R.; Power, C.; Lagos, C. D. P.; Cui, W.; Borgani, S.; Dolag, K.; Murante, G.; Yepes, G.

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Authors

R. Mostoghiu

A. Knebe

C. Power

C. D. P. Lagos

W. Cui

S. Borgani

K. Dolag

G. Murante

G. Yepes



Abstract

Using 324 numerically modelled galaxy clusters as provided by THE THREE HUNDRED project, we study the evolution of the kinematic properties of the stellar component of haloes on first infall. We selected objects with Mstar > 5 × 1010h-1Mpdbl within 3R200 of the main cluster halo at z = 0 and followed their progenitors. We find that although haloes are stripped of their dark matter and gas after entering the main cluster halo, there is practically no change in their stellar kinematics. For the vast majority of our 'galaxies' - defined as the central stellar component found within the haloes that form our sample - their kinematic properties, as described by the fraction of ordered rotation, and their position in the specific stellar angular momentum-stellar mass plane jstar - Mstar are mostly unchanged by the influence of the central host cluster. However, for a small number of infalling galaxies, stellar mergers and encounters with remnant stellar cores close to the centre of the main cluster, particularly during pericentre passage, are able to spin up their stellar component by z = 0.

Citation

Mostoghiu, R., Knebe, A., Pearce, F. R., Power, C., Lagos, C. D. P., Cui, W., …Yepes, G. (2021). The Three Hundred Project: The stellar angular momentum evolution of cluster galaxies. Astronomy and Astrophysics, 652, 1-8. https://doi.org/10.1051/0004-6361/202038425

Journal Article Type Article
Acceptance Date May 3, 2021
Online Publication Date Aug 2, 2021
Publication Date Aug 2, 2021
Deposit Date Sep 7, 2021
Publicly Available Date Sep 7, 2021
Journal Astronomy and Astrophysics
Electronic ISSN 1432-0746
Publisher EDP Sciences
Peer Reviewed Peer Reviewed
Volume 652
Article Number A10
Pages 1-8
DOI https://doi.org/10.1051/0004-6361/202038425
Keywords Space and Planetary Science; Astronomy and Astrophysics
Public URL https://nottingham-repository.worktribe.com/output/6186328
Publisher URL https://www.aanda.org/articles/aa/abs/2021/08/aa38425-20/aa38425-20.html

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