The Next Generation Virgo Cluster Survey (NGVS). XXVII.The Size and Structure of Globular Cluster Systems and their Connection to Dark Matter Halos

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Hauptverfasser: Lim, Sungsoon, Peng, Eric W., Côté, Patrick, Ferrarese, Laura, Roediger, Joel C., Liu, Chengze, Spengler, Chelsea, Sola, Elisabeth, Duc, Pierre-Alain, Sales, Laura V., Blakeslee, John P., Cuillandre, Jean-Charles, Durrell, Patrick R., Emsellem, Eric, Gwyn, Stephen D. J., Lançon, Ariane, Marleau, Francine R., Mihos, J. Christopher, Müller, Oliver, Puzia, Thomas H., Sánchez-Janssen, Rubén
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Veröffentlicht: 2024
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author Lim, Sungsoon
Peng, Eric W.
Côté, Patrick
Ferrarese, Laura
Roediger, Joel C.
Liu, Chengze
Spengler, Chelsea
Sola, Elisabeth
Duc, Pierre-Alain
Sales, Laura V.
Blakeslee, John P.
Cuillandre, Jean-Charles
Durrell, Patrick R.
Emsellem, Eric
Gwyn, Stephen D. J.
Lançon, Ariane
Marleau, Francine R.
Mihos, J. Christopher
Müller, Oliver
Puzia, Thomas H.
Sánchez-Janssen, Rubén
author_facet Lim, Sungsoon
Peng, Eric W.
Côté, Patrick
Ferrarese, Laura
Roediger, Joel C.
Liu, Chengze
Spengler, Chelsea
Sola, Elisabeth
Duc, Pierre-Alain
Sales, Laura V.
Blakeslee, John P.
Cuillandre, Jean-Charles
Durrell, Patrick R.
Emsellem, Eric
Gwyn, Stephen D. J.
Lançon, Ariane
Marleau, Francine R.
Mihos, J. Christopher
Müller, Oliver
Puzia, Thomas H.
Sánchez-Janssen, Rubén
contents We study the size and structure of globular clusters (GC) systems of 118 early-type galaxies from the NGVS, MATLAS, and ACSVCS surveys. Fitting Sérsic profiles, we investigate the relationship between effective radii of GC systems ($R_{e, \rm gc}$) and galaxy properties. GC systems are 2--4 times more extended than host galaxies across the entire stellar mass range of our sample ($10^{8.3} < M_* < 10^{11.6}~M_{\odot}$). The relationship between $R_{e, \rm gc}$ and galaxy stellar mass exhibits a characteristic "knee" at a stellar mass of $M_p \simeq 10^{10.8}$, similar to galaxy $R_e$--stellar mass relationship. We present a new characterization of the traditional blue and red GC color sub-populations, describing them with respect to host galaxy $(g'-i')$ color ($Δ_{gi}$): GCs with similar colors to their hosts have a "red" $Δ_{gi}$, and those significantly bluer GCs have a "blue" $Δ_{gi}$. The GC populations with red $Δ_{gi}$, even in dwarf galaxies, are twice as extended as the stars, suggesting that formation or survival mechanisms favor the outer regions. We find a tight correlation between $R_{e, \rm gc}$ and the total number of GCs, with intrinsic scatter $\lesssim 0.1$ dex spanning two and three orders of magnitude in size and number, respectively. This holds for both red and blue subpopulations, albeit with different slopes. Assuming that $N_{GC, Total}$ correlates with $M_{200}$, we find that the red GC systems have effective radii of roughly 1-5\% $R_{\rm 200}$, while the blue GC systems in massive galaxies can have sizes as large as $\sim$10\% $R_{\rm 200}$. Environmental dependence on $R_{e, \rm gc}$ is also found, with lower density environments exhibiting more extended GC systems at fixed mass.
format Preprint
id arxiv_https___arxiv_org_abs_2403_09926
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The Next Generation Virgo Cluster Survey (NGVS). XXVII.The Size and Structure of Globular Cluster Systems and their Connection to Dark Matter Halos
Lim, Sungsoon
Peng, Eric W.
Côté, Patrick
Ferrarese, Laura
Roediger, Joel C.
Liu, Chengze
Spengler, Chelsea
Sola, Elisabeth
Duc, Pierre-Alain
Sales, Laura V.
Blakeslee, John P.
Cuillandre, Jean-Charles
Durrell, Patrick R.
Emsellem, Eric
Gwyn, Stephen D. J.
Lançon, Ariane
Marleau, Francine R.
Mihos, J. Christopher
Müller, Oliver
Puzia, Thomas H.
Sánchez-Janssen, Rubén
Astrophysics of Galaxies
We study the size and structure of globular clusters (GC) systems of 118 early-type galaxies from the NGVS, MATLAS, and ACSVCS surveys. Fitting Sérsic profiles, we investigate the relationship between effective radii of GC systems ($R_{e, \rm gc}$) and galaxy properties. GC systems are 2--4 times more extended than host galaxies across the entire stellar mass range of our sample ($10^{8.3} < M_* < 10^{11.6}~M_{\odot}$). The relationship between $R_{e, \rm gc}$ and galaxy stellar mass exhibits a characteristic "knee" at a stellar mass of $M_p \simeq 10^{10.8}$, similar to galaxy $R_e$--stellar mass relationship. We present a new characterization of the traditional blue and red GC color sub-populations, describing them with respect to host galaxy $(g'-i')$ color ($Δ_{gi}$): GCs with similar colors to their hosts have a "red" $Δ_{gi}$, and those significantly bluer GCs have a "blue" $Δ_{gi}$. The GC populations with red $Δ_{gi}$, even in dwarf galaxies, are twice as extended as the stars, suggesting that formation or survival mechanisms favor the outer regions. We find a tight correlation between $R_{e, \rm gc}$ and the total number of GCs, with intrinsic scatter $\lesssim 0.1$ dex spanning two and three orders of magnitude in size and number, respectively. This holds for both red and blue subpopulations, albeit with different slopes. Assuming that $N_{GC, Total}$ correlates with $M_{200}$, we find that the red GC systems have effective radii of roughly 1-5\% $R_{\rm 200}$, while the blue GC systems in massive galaxies can have sizes as large as $\sim$10\% $R_{\rm 200}$. Environmental dependence on $R_{e, \rm gc}$ is also found, with lower density environments exhibiting more extended GC systems at fixed mass.
title The Next Generation Virgo Cluster Survey (NGVS). XXVII.The Size and Structure of Globular Cluster Systems and their Connection to Dark Matter Halos
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2403.09926