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author Dulcien, Carolina
Jaffe, Yara L.
Crossett, Jacob P.
Baier-Soto, Raul
Mendez-Hernandez, Hugo
Haines, Christopher P.
Cabrera-Vives, Guillermo
Olivares, Patricio
Vasquez-Bustos, P.
Argudo-Fernandez, Maria
Vivanco, Javiera
Bilton, Lawrence
Bom, Clecio R.
D'Ago, Giuseppe
Finoguenov, Alexis
Kuchner, Ulrike
Lima-Dias, Ciria
Merluzzi, Paola
Monachesi, Antonela
Pallero, Diego
Tejos, Nicolas
Teixeira, Gabriel S. M.
Sifon, Cristobal
Carvalho, Maiara S.
Demarco, Ricardo
Ibar, Eduardo
Montaguth, Gissel P.
Piraino-Cerda, Franco
Rescigno, Umberto
Sampaio, Vitor
Schwarz, Gustavo B. Oliveira
Smith, Rory
Vulcani, Benedetta
Malavasi, Nicola
author_facet Dulcien, Carolina
Jaffe, Yara L.
Crossett, Jacob P.
Baier-Soto, Raul
Mendez-Hernandez, Hugo
Haines, Christopher P.
Cabrera-Vives, Guillermo
Olivares, Patricio
Vasquez-Bustos, P.
Argudo-Fernandez, Maria
Vivanco, Javiera
Bilton, Lawrence
Bom, Clecio R.
D'Ago, Giuseppe
Finoguenov, Alexis
Kuchner, Ulrike
Lima-Dias, Ciria
Merluzzi, Paola
Monachesi, Antonela
Pallero, Diego
Tejos, Nicolas
Teixeira, Gabriel S. M.
Sifon, Cristobal
Carvalho, Maiara S.
Demarco, Ricardo
Ibar, Eduardo
Montaguth, Gissel P.
Piraino-Cerda, Franco
Rescigno, Umberto
Sampaio, Vitor
Schwarz, Gustavo B. Oliveira
Smith, Rory
Vulcani, Benedetta
Malavasi, Nicola
contents Galaxy clusters grow through the accretion of galaxies from groups, filaments, and other clusters. During this process, galaxies may undergo pre-processing in lower-density environments, where galaxy-galaxy mergers and other interactions can significantly alter their properties prior to cluster infall. We investigate the role of galaxy mergers in the pre-processing of galaxies prior to cluster infall by studying the spatial distribution of mergers across the cosmic web. We use a sample of 43,922 galaxies targeted by the 4MOST CHANCES survey in and around 33 low-redshift clusters (z < 0.07). Using Zoobot, a deep-learning framework trained on Galaxy Zoo data, we identify 698 galaxy mergers. We measure their distances to cosmic web filaments and compare them with those of non-merging galaxies. We find that galaxy mergers are significantly closer to filaments than the non-merging galaxy population, with this trend being strongest beyond the cluster virial radius. This suggests that filaments provide conditions conducive to mergers, possibly moderating relative velocities and enhancing gas availability. Our findings support a scenario in which filaments play a key role in transforming galaxies through pre-processing by promoting mergers before they enter cluster cores where star formation quenches.
format Preprint
id arxiv_https___arxiv_org_abs_2603_06821
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Caught in the web: galaxy mergers along cosmic filaments
Dulcien, Carolina
Jaffe, Yara L.
Crossett, Jacob P.
Baier-Soto, Raul
Mendez-Hernandez, Hugo
Haines, Christopher P.
Cabrera-Vives, Guillermo
Olivares, Patricio
Vasquez-Bustos, P.
Argudo-Fernandez, Maria
Vivanco, Javiera
Bilton, Lawrence
Bom, Clecio R.
D'Ago, Giuseppe
Finoguenov, Alexis
Kuchner, Ulrike
Lima-Dias, Ciria
Merluzzi, Paola
Monachesi, Antonela
Pallero, Diego
Tejos, Nicolas
Teixeira, Gabriel S. M.
Sifon, Cristobal
Carvalho, Maiara S.
Demarco, Ricardo
Ibar, Eduardo
Montaguth, Gissel P.
Piraino-Cerda, Franco
Rescigno, Umberto
Sampaio, Vitor
Schwarz, Gustavo B. Oliveira
Smith, Rory
Vulcani, Benedetta
Malavasi, Nicola
Astrophysics of Galaxies
Galaxy clusters grow through the accretion of galaxies from groups, filaments, and other clusters. During this process, galaxies may undergo pre-processing in lower-density environments, where galaxy-galaxy mergers and other interactions can significantly alter their properties prior to cluster infall. We investigate the role of galaxy mergers in the pre-processing of galaxies prior to cluster infall by studying the spatial distribution of mergers across the cosmic web. We use a sample of 43,922 galaxies targeted by the 4MOST CHANCES survey in and around 33 low-redshift clusters (z < 0.07). Using Zoobot, a deep-learning framework trained on Galaxy Zoo data, we identify 698 galaxy mergers. We measure their distances to cosmic web filaments and compare them with those of non-merging galaxies. We find that galaxy mergers are significantly closer to filaments than the non-merging galaxy population, with this trend being strongest beyond the cluster virial radius. This suggests that filaments provide conditions conducive to mergers, possibly moderating relative velocities and enhancing gas availability. Our findings support a scenario in which filaments play a key role in transforming galaxies through pre-processing by promoting mergers before they enter cluster cores where star formation quenches.
title Caught in the web: galaxy mergers along cosmic filaments
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2603.06821