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The Next Generation Virgo cluster Survey (NGVS). XXVI. The issues of photometric age and metallicity estimates for globular clusters

Authors :
Powalka, Mathieu
Lançon, Ariane
Puzia, Thomas H.
Peng, Eric W.
Liu, Chengze
Muñoz, Roberto P.
Blakeslee, John P.
Côté, Patrick
Ferrarese, Laura
Roediger, Joel
Sánchez-Janssen, Rúben
Zhang, Hongxin
Durrell, Patrick R.
Cuillandre, Jean-Charles
Duc, Pierre-Alain
Guhathakurta, Puragra
Gwyn, S. D. J.
Hudelot, Patrick
Mei, Simona
Toloba, Elisa
Publication Year :
2017

Abstract

Large samples of globular clusters (GC) with precise multi-wavelength photometry are becoming increasingly available and can be used to constrain the formation history of galaxies. We present the results of an analysis of Milky Way (MW) and Virgo core GCs based on five optical-near-infrared colors and ten synthetic stellar population models. For the MW GCs, the models tend to agree on photometric ages and metallicities, with values similar to those obtained with previous studies. When used with Virgo core GCs, for which photometry is provided by the Next Generation Virgo cluster Survey (NGVS), the same models generically return younger ages. This is a consequence of the systematic differences observed between the locus occupied by Virgo core GCs and models in panchromatic color space. Only extreme fine-tuning of the adjustable parameters available to us can make the majority of the best-fit ages old. Although we cannot exclude that the formation history of the Virgo core may lead to more conspicuous populations of relatively young GCs than in other environments, we emphasize that the intrinsic properties of the Virgo GCs are likely to differ systematically from those assumed in the models. Thus, the large wavelength coverage and photometric quality of modern GC samples, such as used here, is not by itself sufficient to better constrain the GC formation histories. Models matching the environment-dependent characteristics of GCs in multi-dimensional color space are needed to improve the situation.<br />Comment: 18 pages, 12 figures, Accepted for publication in ApJ

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.1706.04194
Document Type :
Working Paper
Full Text :
https://doi.org/10.3847/1538-4357/aa77b1