Looking into the faintEst WIth MUSE (LEWIS): Exploring the nature of ultra-diffuse galaxies in the Hydra-I cluster IV. A study of the Globular Cluster population in four UDGs

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Main Authors: Mirabile, Marco, Cantiello, Michele, Rejkuba, Marina, Mieske, Steffen, Iodice, Enrichetta, Buttitta, Chiara, Buzzo, Maria Luisa, Hartke, Johanna, Doll, Goran, Rossi, Luca, Arnaboldi, Magda, Branchesi, Marica, D'Ago, Giuseppe, Falcon-Barroso, Jesus, Fahrion, Katja, Forbes, Duncan A., Gullieuszik, Marco, Hilker, Michael, Lohmann, Felipe S., Paolillo, Maurizio, Riccio, Gabriele, Richtler, Tom, Spavone, Marilena
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Published: 2025
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author Mirabile, Marco
Cantiello, Michele
Rejkuba, Marina
Mieske, Steffen
Iodice, Enrichetta
Buttitta, Chiara
Buzzo, Maria Luisa
Hartke, Johanna
Doll, Goran
Rossi, Luca
Arnaboldi, Magda
Branchesi, Marica
D'Ago, Giuseppe
Falcon-Barroso, Jesus
Fahrion, Katja
Forbes, Duncan A.
Gullieuszik, Marco
Hilker, Michael
Lohmann, Felipe S.
Paolillo, Maurizio
Riccio, Gabriele
Richtler, Tom
Spavone, Marilena
author_facet Mirabile, Marco
Cantiello, Michele
Rejkuba, Marina
Mieske, Steffen
Iodice, Enrichetta
Buttitta, Chiara
Buzzo, Maria Luisa
Hartke, Johanna
Doll, Goran
Rossi, Luca
Arnaboldi, Magda
Branchesi, Marica
D'Ago, Giuseppe
Falcon-Barroso, Jesus
Fahrion, Katja
Forbes, Duncan A.
Gullieuszik, Marco
Hilker, Michael
Lohmann, Felipe S.
Paolillo, Maurizio
Riccio, Gabriele
Richtler, Tom
Spavone, Marilena
contents As old stellar systems, globular clusters (GCs) are key fossil tracers of galaxy formation and interaction histories. This paper is part of the LEWIS project, an integral-field spectroscopic survey of ultra-diffuse galaxies (UDGs) in the Hydra I cluster. We use MUSE spectroscopy and new VIRCAM $H$-band imaging data to study the GC populations and dark matter content in four dwarf galaxies. We retrieved line-of-sight velocities for all sources in the observed MUSE fields. Since the spectroscopic measurements are limited to relatively bright sources, we developed a multi-band photometric procedure to identify additional GC candidates too faint for spectroscopic confirmation. GC candidates were selected using a combination of photometric properties and morphometric criteria. Additionally, the $H$-band observations were used to constrain the stellar masses of the studied galaxies. Based on the spectroscopic classification, we confirm one GC in UDG3, two in UDG7, and four in UDG11, while UDG9 has no spectroscopically confirmed bright GCs. We identify four intra-cluster GCs in the vicinity of UDG3 and UDG11, and one ultra-compact dwarf with a radial velocity only $Δv = -85 \pm 10\mathrm{km\ s^{-1}}$ relative to UDG7, suggesting it may be bound to it. Considering completeness corrections and accounting for possible contamination, from photometry we estimate that the number of GCs ranges between 0 and $\sim40$ for the investigated UDGs. Their specific frequencies suggest that three out of four UDGs are either GC-rich, similar to those in the Coma cluster, or belong to an intermediate population as seen in the Perseus cluster. Dark matter content estimates, inferred from GC counts and stellar mass, indicate that these galaxies are dark-matter dominated, with dynamical-to-stellar mass ratios of $M_{\mathrm{dyn}} / M_\star \sim 10-1000$.
format Preprint
id arxiv_https___arxiv_org_abs_2509_14206
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Looking into the faintEst WIth MUSE (LEWIS): Exploring the nature of ultra-diffuse galaxies in the Hydra-I cluster IV. A study of the Globular Cluster population in four UDGs
Mirabile, Marco
Cantiello, Michele
Rejkuba, Marina
Mieske, Steffen
Iodice, Enrichetta
Buttitta, Chiara
Buzzo, Maria Luisa
Hartke, Johanna
Doll, Goran
Rossi, Luca
Arnaboldi, Magda
Branchesi, Marica
D'Ago, Giuseppe
Falcon-Barroso, Jesus
Fahrion, Katja
Forbes, Duncan A.
Gullieuszik, Marco
Hilker, Michael
Lohmann, Felipe S.
Paolillo, Maurizio
Riccio, Gabriele
Richtler, Tom
Spavone, Marilena
Astrophysics of Galaxies
As old stellar systems, globular clusters (GCs) are key fossil tracers of galaxy formation and interaction histories. This paper is part of the LEWIS project, an integral-field spectroscopic survey of ultra-diffuse galaxies (UDGs) in the Hydra I cluster. We use MUSE spectroscopy and new VIRCAM $H$-band imaging data to study the GC populations and dark matter content in four dwarf galaxies. We retrieved line-of-sight velocities for all sources in the observed MUSE fields. Since the spectroscopic measurements are limited to relatively bright sources, we developed a multi-band photometric procedure to identify additional GC candidates too faint for spectroscopic confirmation. GC candidates were selected using a combination of photometric properties and morphometric criteria. Additionally, the $H$-band observations were used to constrain the stellar masses of the studied galaxies. Based on the spectroscopic classification, we confirm one GC in UDG3, two in UDG7, and four in UDG11, while UDG9 has no spectroscopically confirmed bright GCs. We identify four intra-cluster GCs in the vicinity of UDG3 and UDG11, and one ultra-compact dwarf with a radial velocity only $Δv = -85 \pm 10\mathrm{km\ s^{-1}}$ relative to UDG7, suggesting it may be bound to it. Considering completeness corrections and accounting for possible contamination, from photometry we estimate that the number of GCs ranges between 0 and $\sim40$ for the investigated UDGs. Their specific frequencies suggest that three out of four UDGs are either GC-rich, similar to those in the Coma cluster, or belong to an intermediate population as seen in the Perseus cluster. Dark matter content estimates, inferred from GC counts and stellar mass, indicate that these galaxies are dark-matter dominated, with dynamical-to-stellar mass ratios of $M_{\mathrm{dyn}} / M_\star \sim 10-1000$.
title Looking into the faintEst WIth MUSE (LEWIS): Exploring the nature of ultra-diffuse galaxies in the Hydra-I cluster IV. A study of the Globular Cluster population in four UDGs
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2509.14206