The Variable Star Population of the Globular Cluster B514 in the Andromeda Galaxy
Gisella Clementini (1), Rodrigo Contreras (1,2), Luciana Federici (1),, Carla Cacciari (1), Roberto Merighi (1), Horace A. Smith (3), Marcio Catelan, (4,5), Flavio Fusi Pecci (1), Marcella Marconi (6), Karen Kinemuchi (7,8),, and Barton J. Pritzl (9) ((1)INAF

TL;DR
This study identifies and analyzes 89 RR Lyrae stars in the metal-poor globular cluster B514 in Andromeda, revealing its Oosterhoff type and estimating its distance, with implications for understanding extragalactic globular cluster properties.
Contribution
First detection and detailed period analysis of RR Lyrae stars in B514, providing insights into its Oosterhoff classification and distance in the context of extragalactic globular clusters.
Findings
B514 contains 89 RR Lyrae stars, mostly RRab types.
B514 is likely an Oosterhoff type I cluster.
Distance to B514 is approximately 800 kpc.
Abstract
A rich harvest of RR Lyrae stars has been identified for the first time in B514, a metal-poor ([Fe/H] = 1.95 +/- 0.10 dex) globular cluster of the Andromeda galaxy (M31), based on Hubble Space Telescope Wide Field Planetary Camera 2 and Advanced Camera for Surveys time-series observations. We have detected and derived periods for 89 RR Lyrae stars (82 fundamental-mode -RRab- and 7 first-overtone -RRc- pulsators, respectively) among 161 candidate variables identified in the cluster. The average period of the RR Lyrae variables (<Pab> = 0.58 days and <Pc> = 0.35 days, for RRab and RRc pulsators, respectively) and the position in the period-amplitude diagram both suggest that B514 is likely an Oosterhoff type I cluster. This appears to be in disagreement with the general behaviour of the metal-poor globular clusters in the Milky Way, which show instead Oosterhoff type II pulsation…
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