Astronomy and Astrophysics – Astronomy
Scientific paper
Dec 1998
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1998aj....116.2841k&link_type=abstract
The Astronomical Journal, Volume 116, Issue 6, pp. 2841-2853.
Astronomy and Astrophysics
Astronomy
97
Galaxies: Abundances, Galaxies: Individual: Ngc Number: Ngc 3115, Galaxies: Star Clusters, Galaxies: Stellar Content, Galaxy: Globular Clusters: General
Scientific paper
Using the Wide Field Planetary Camera 2 on board the Hubble Space Telescope we have identified 144 globular cluster candidates in the inner region of the S0 galaxy NGC 3115. The color distribution of the globular clusters is bimodal, with a blue peak at V-I = 0.96 mag and a red peak at V-I = 1.17 mag. There are roughly equal number of blue and red clusters. The mean [Fe/H] of the blue population is -1.36 dex, while the red population has a mean [Fe/H] of -0.37 dex. Following Ashman & Zepf, we interpret the bimodality as evidence of multiple epochs of cluster formation in the metal enrichment history of the galaxy. Assuming that the blue peak corresponds to a primordial, 15 Gyr old, metal-poor population of globular clusters, we derive an age of 11 +/- 3 Gyr for the younger, red clusters. We also find that the age and metallicities of the globular clusters are consistent with the red giant stars in the field, suggesting that the two systems formed coevally. The spatial distribution of both the red and the blue clusters are flattened with major and minor axes roughly colinear with the galaxy light profile. While the red clusters follow the thick disk component of the galaxy, the blue cluster distribution is less flattened and mimics the bulge/halo light distribution. We find a local specific frequency of 1.3 +/- 0.1 in the central region of the galaxy, which is lower than the global value of 2.3 +/- 0.5 reported in the literature, implying that the specific frequency increases with galactocentric distance. We have also observed the globular cluster luminosity function 2 mag deeper than the turnover luminosity and derived a distance modulus of m-M = 29.8 +/- 0.3 mag to NGC 3115. The average half-light radii of the clusters is ~2 pc, and the red clusters are ~20% smaller than the blue ones.
Kundu Arunav
Whitmore Bradley C.
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