Discovery of More than 200 RR Lyrae Variables in M62: An Oosterhoff I Globular Cluster with a Predominantly Blue Horizontal Branch
Rodrigo A. Contreras, M. Catelan, Horace A. Smith, B. J. Pritzl, J. Borissova
Abstract
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Rodrigo A. Contreras, M. Catelan, Horace A. Smith, B. J. Pritzl, J. Borissova
Abstract
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We report on the discovery of a large number of RR Lyrae variable stars in the moderately metal-rich Galactic globular cluster M62 (NGC 6266), which places it among the top three most RR Lyrae-rich globular clusters known. Likely members of the cluster in our studied field, from our preliminary number counts, include ≈130 fundamental-mode (RR ab ) pulsators, with ⟨ P ab ⟩ = 0.548 days, and ≈75 first-overtone (RR c ) pulsators, with ⟨ P c ⟩ = 0.300 days. The average periods and the position of the RR ab variables with well-defined light curves in the Bailey diagram both suggest that the cluster is of Oosterhoff type I. However, the morphology of the cluster's horizontal branch (HB) is strikingly similar to that of the Oosterhoff type II globular cluster M15 (NGC 7078), with a dominant blue HB component and a very extended blue tail. Since M15 and M62 differ in metallicity by about 1 dex, we conclude that metallicity, at a fixed HB type, is a key parameter determining the Oosterhoff status of a globular cluster and the position of its variables in the Bailey diagram.
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We report on the discovery of a large number of RR Lyrae variable stars in the moderately metal-rich Galactic globular cluster M62 (NGC 6266), which places it among the top three most RR Lyrae-rich globular clusters known. Likely members of the cluster in our studied field, from our preliminary number counts, include ≈130 fundamental-mode (RR ab ) pulsators, with ⟨ P ab ⟩ = 0.548 days, and ≈75 first-overtone (RR c ) pulsators, with ⟨ P c ⟩ = 0.300 days. The average periods and the position of the RR ab variables with well-defined light curves in the Bailey diagram both suggest that the cluster is of Oosterhoff type I. However, the morphology of the cluster's horizontal branch (HB) is strikingly similar to that of the Oosterhoff type II globular cluster M15 (NGC 7078), with a dominant blue HB component and a very extended blue tail. Since M15 and M62 differ in metallicity by about 1 dex, we conclude that metallicity, at a fixed HB type, is a key parameter determining the Oosterhoff status of a globular cluster and the position of its variables in the Bailey diagram.
Key concepts: Globular cluster, RR Lyrae variable, Horizontal branch, Astrophysics, Physics, Metallicity, Blue straggler, Variable star