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arxiv: 1705.01951 · v1 · pith:VDAZYUVHnew · submitted 2017-05-04 · 🌌 astro-ph.SR · astro-ph.GA· astro-ph.IM

The State-of-the-Art HST Astro-Photometric Analysis of the core of ω Centauri. II. Differential-Reddening Map

classification 🌌 astro-ph.SR astro-ph.GAastro-ph.IM
keywords differential-reddeningcoreastro-photometricfieldlevelpresentedreddeningseries
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We take advantage of the exquisite quality of the Hubble Space Telescope astro-photometric catalog of the core of wCen presented in the first paper of this series to derive a high-resolution, high-precision, high-accuracy differential-reddening map of the field. The map has a spatial resolution of 2x2 square arcsecs over a total field of view of about 4.3'x4.3'. The differential reddening itself is estimated via an iterative procedure using five distinct color-magnitude diagrams, which provided consistent results to within the 0.1% level. Assuming an average reddening value E(B-V)=0.12, the differential-reddening within the cluster's core can vary by up to +/- 10%, with a typical a standard deviation of about 4%. Our differential-reddening map is made available to the astronomical community in the form of a multi-extension FITS file. This differential-reddening map is essential for a detailed understanding of the multiple stellar populations of wCen, as presented in the next paper in this series. Moreover, it provides unique insight into the level of small spatial-scale extinction variations in the Galactic foreground.

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