English

OGLE-ing the Magellanic System: Photometric Metallicity from Fundamental Mode RR Lyrae Stars

Solar and Stellar Astrophysics 2016-11-09 v2 Astrophysics of Galaxies

Abstract

In an era of extensive photometric observations, the catalogs of RR Lyr type variable stars number tens of thousands of objects. The relation between the iron abundance [Fe/H] and the Fourier parameters of the stars light curve allows us to investigate mean metallicities and metallicity gradients in various stellar environments, independently of time-consuming spectroscopic observations. In this paper we use almost 6500 VV- and II-band light curves of fundamental mode RR Lyr stars from the OGLE-IV survey to provide a relation between the VV- and II-band phase parameter φ31\varphi_{31} used to estimate [Fe/H]. The relation depends on metallicity, which limits its applicability. We apply this relation to metallicity formulae developed for the Johnson VV- and the Kepler KpKp-band to obtain the relation between [Fe/H] and φ31\varphi_{31} for the II-band photometry. Last, we apply the new relation of Nemec to the OGLE-IV fundamental mode RR Lyr stars data and construct a metallicity map of the Magellanic Clouds. Median [Fe/H] is 1.39±0.44-1.39\pm0.44 dex for the LMC and 1.77±0.48-1.77\pm0.48 dex for the SMC, on the Jurcsik metallicity scale. We also find a metallicity gradient within the LMC with a slope of 0.029±0.002-0.029\pm0.002 dex/kpc in the inner 5 kpc and 0.030±0.003-0.030 \pm0.003 dex/kpc beyond 8 kpc, and no gradient in-between (0.019±0.002-0.019\pm0.002 dex/kpc integrally). We do not observe a metallicity gradient in the SMC, although we show that the metal-rich RRab stars are more concentrated toward the SMC center than the metal-poor.

Keywords

Cite

@article{arxiv.1608.00013,
  title  = {OGLE-ing the Magellanic System: Photometric Metallicity from Fundamental Mode RR Lyrae Stars},
  author = {D. M. Skowron and I. Soszyński and A. Udalski and M. K. Szymański and P. Pietrukowicz and R. Poleski and Ł. Wyrzykowski and K. Ulaczyk and S. Kozłowski and J. Skowron and P. Mróz and M. Pawlak},
  journal= {arXiv preprint arXiv:1608.00013},
  year   = {2016}
}

Comments

24 pages, 14 figures, 4 tables. A new version contains substantial changes and is consistent with Acta Astron. 2016, 66, 269. Electronic table available