Photometric metallicities in Boötes I

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Abstract

We present new Strömgren and Washington data sets for the BoÖtes I dwarf galaxy, and combine them with the available Sloan Digital Sky Survey photometry. The goal of this project is to refine a ground-based, practical, accurate method to determine age and metallicity for individual stars in BoÖtes I that can be selected in an unbiased imaging survey, without having to take spectra. With few bright upper red giant branch stars and distances of about 35-250 kpc, the ultra-faint dwarf galaxies (UDFs) present observational challenges in characterizing their stellar population. Other recent studies have produced spectra and proper motions, making BoÖtes I an ideal test case for our photometric methods. We produce photometric metallicities from StrÖmgren and Washington photometry, for stellar systems with a range of -1.0 > [Fe/H] > -3.5. Needing to avoid the collapse of the metallicity sensitivity of the StrÖmgren m1-index on the lower red giant branch, we replace the Strömgren μ filter with the broader Washington C filter to minimize observing time. We construct two indices: m* = (C - T1)0-(T1 - T2)0 and m** = (C - b)0 - (b - y)0. We find that CT1by is the most successful filter combination, for individual stars with [Fe/H] [Fe/H] > -3.7. The best-fitting Dartmouth isochrones give a mean age, for all the Boötes I stars in our data set, of 11.5 ± 0.4 Gyr. From ground-based telescopes, we show that the optimal filter combination is CT1by, avoiding the v filter entirely. We demonstrate that we can break the isochrones' age- metallicity degeneracy with the CT1by filters, using stars with log g = 2.5-3.0, which have less than a 2 per cent change in their (C - T1) colour due to age, over a range of 10-14 Gyr. © 2014 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society.

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APA

Hughes, J., Wallerstein, G., Dotter, A., & Geisler, D. (2014). Photometric metallicities in Boötes I. Monthly Notices of the Royal Astronomical Society, 439(1), 788–809. https://doi.org/10.1093/mnras/stt2500

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