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18 April 2024
 
  » arxiv » 1902.5637

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Mapping the Interstellar Reddening and Extinction towards Baade's Window Using Minimum Light Colors of ab-type RR Lyrae Stars. Revelations from the De-reddened Color-Magnitude Diagrams
Abhijit Saha ; A. Katherina Vivas ; Edward W. Olszewski ; Verne Smith ; Knut Olsen ; Robert Blum ; Francisco Valdes ; Jenna Claver ; Annalisa Calamida ; Alistair R. Walker ; Thomas Matheson ; Gautham Narayan ; Monika Soraisam ; Katia Cunha ; T. Axelrod ; Joshua S. Bloom ; S. Bradley Cenko ; Brenda Frye ; Mario Juric ; Catherine Kaleida ; Andrea Kunder ; Adam Miller ; David Nidever ; Stephen Ridgway ;
Date 14 Feb 2019
AbstractWe have obtained repeated images of 6 fields towards the Galactic bulge in 5 passbands (u, g, r, i, z) with the DECam imager on the Blanco 4m telescope at CTIO. From over 1.6 billion individual photometric measurements in the field centered on Baade’s window, we have detected 4877 putative variable stars. 474 of these have been confirmed as fundamental mode RR Lyrae stars, whose colors at minimum light yield line-of-sight reddening determinations as well as a reddening law towards the Galactic Bulge which differs significantly from the standard R_V = 3.1 formulation. Assuming that the stellar mix is invariant over the 3 square-degree field, we are able to derive a line-of-sight reddening map with sub-arcminute resolution, enabling us to obtain de-reddened and extinction corrected color-magnitude diagrams (CMD’s) of this bulge field using up to 2.5 million well-measured stars. The corrected CMD’s show unprecedented detail and expose sparsely populated sequences: e.g., delineation of the very wide red giant branch, structure within the red giant clump, the full extent of the horizontal branch, and a surprising bright feature which is likely due to stars with ages younger than 1 Gyr. We use the RR Lyrae stars to trace the spatial structure of the ancient stars, and find an exponential decline in density with Galactocentric distance. We discuss ways in which our data products can be used to explore the age and metallicity properties of the bulge, and how our larger list of all variables is useful for learning to interpret future LSST alerts.
Source arXiv, 1902.5637
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