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Star formation in galaxies falling into clusters along supercluster-scale filaments

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arxiv 0804.4177 v1 pith:433W32PD submitted 2008-04-25 astro-ph

Star formation in galaxies falling into clusters along supercluster-scale filaments

classification astro-ph
keywords galaxiesclusterfallingformationgalaxystaralongbefore
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With the help of a statistical parameter derived from optical spectra, we show that the current star formation rate of a galaxy, falling into a cluster along a supercluster filament, is likely to undergo a sudden enhancement before the galaxy reaches the virial radius of the cluster. From a sample of 52 supercluster-scale filaments of galaxies joining a pair of rich clusters of galaxies within the two-degree Field Redshift Survey region, we find a significant enhancement of star formation, within a narrow range between 2-3 h/70 Mpc of the centre of the cluster into which the galaxy is falling. This burst of star formation is almost exclusively seen in the fainter dwarf galaxies (M_B> -20). The relative position of the peak does not depend on whether the galaxy is a member of a group or not, but non-group galaxies have on average a higher rate of star formation immediately before falling into a cluster. From the various trends, we conclude that the predominant process responsible for this rapid burst is the close interaction with other galaxies falling into the cluster along the same filament, if the interaction occurs before the gas reservoir of the galaxy gets stripped off due to the interaction with the intracluster medium.

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Cited by 1 Pith paper

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  1. Galaxy evolution in the cosmic web: the relative impact of nodes and filaments in the EAGLE simulation

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    In the EAGLE simulation, red galaxies cluster near filament spines and nodes, blue galaxies dominate outskirts, and the mass-colour coupling strengthens away from nodes at fixed filament proximity.