Nonlinear Color-Metallicity Relations of Globular Clusters. IX. Different Radial Number Density Profiles between Blue and Red Clusters
arXiv:2011.12307 · doi:10.3847/1538-4357/abc4e9
Abstract
The optical colors of globular clusters (GCs) in most large early-type galaxies are bimodal. Blue and red GCs show a sharp difference in the radial profile of their surface number density in the sense that red GCs are more centrally concentrated than blue GCs. An instant interpretation is that there exist two distinct GC subsystems having different radial distributions. This view, however, was challenged by a scenario in which, due to the nonlinear nature of the GC metallicity-to-color transformation for old (10 Gyr) GCs, a broad unimodal metallicity spread can exhibit a bimodal color distribution. Here we show, by simulating the radial trends in the GC color distributions of the four nearby giant elliptical galaxies (M87, M49, M60, and NGC 1399), that the difference in the radial profile between blue and red GCs stems naturally from the metallicity-to-color nonlinearity plus the well-known radial metallicity gradient of GC systems. The model suggests no or little radial variation in GC age even out to 20. Our results provide a simpler solution to the distinct radial profiles of blue and red GCs that does not necessarily invoke the presence of two GC subsystems and further fortify the nonlinearity scenario for the GC color bimodality phenomenon.
18 pages, 11 figures, 3 tables, accepted for publication in ApJ
References in corpus (22)
- The SAURON project - VI. Line strength maps of 48 elliptical and lenticular galaxies
- Explaining the Color Distributions of Globular Cluster Systems in Elliptical Galaxies
- Spatially resolved spectroscopy of early-type galaxies over a range in mass
- Globular Cluster Systems in Giant Ellipticals: the Mass/Metallicity Relation
- Large-scale study of the NGC 1399 globular cluster system in Fornax
- Stellar populations of early-type galaxies in different environments III. Line-strength gradients
- Globular Cluster Systems in Brightest Cluster Galaxies. III: Beyond Bimodality
- The Globular Cluster Systems in the Coma Ellipticals. IV: WFPC2 Photometry for Five Giant Ellipticals
- A Quantitative Link Between Globular Clusters and the Stellar Halos in Elliptical Galaxies
- A Subaru/Suprime-Cam wide-field survey of globular cluster populations around M87 - II: Colour and spatial distribution
- The early-type galaxies NGC 1407 and NGC 1400 - II: star formation and chemical evolutionary history
- The SAMI Galaxy Survey: stellar population gradients of central galaxies
- VLT photometry in the Antlia Cluster: the giant ellipticals NGC 3258 and NGC 3268 and their globular cluster systems
- The Globular Cluster System of M60 (NGC 4649). I. CFHT MOS Spectroscopy and Database
- The extremely populated globular cluster system of the lenticular galaxy NGC 6861
- Globular cluster systems as tracers of the evolutionary history in NGC 3258 and NGC 3268
- Isolated elliptical galaxies and their globular cluster systems. II. NGC 7796 - globular clusters, dynamics, companion
- Tracing the Assembly History of NGC 1395 through its Globular Cluster System
- A Gemini/GMOS study of the bright elliptical galaxy NGC 3613 and its globular cluster system
- A Wide-field Photometric Survey of Globular Clusters in the Peculiar Early-type Galaxy M85
- Early-type galaxies in low-density environments: NGC 6876 explored through its globular cluster system
- Field/Isolated lenticular galaxies with high values: the case of NGC 4546 and its globular cluster system
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- Nonlinear Color-Metallicity Relations of Globular Clusters. XI. Nonlinearity Effect Revealed by NGC 5128 (Centaurus A) and NGC 4594 (Sombrero) Galaxies