RR Lyrae stars in the southern globular cluster NGC 362
Aims.NGC 362 is a bright southern globular cluster in the foreground of the Small Magellanic Cloud (SMC), for which no extensive variability survey has ever been done. Finding regularly pulsating RR Lyrae stars in the cluster can lead to improved metallicity and distance estimates of the system, whi...
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Published in | Astronomy and astrophysics (Berlin) Vol. 463; no. 2; pp. 589 - 600 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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01.02.2007
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Abstract | Aims.NGC 362 is a bright southern globular cluster in the foreground of the Small Magellanic Cloud (SMC), for which no extensive variability survey has ever been done. Finding regularly pulsating RR Lyrae stars in the cluster can lead to improved metallicity and distance estimates of the system, while other types of variable objects may be used to confirm the results. Methods.Time-series CCD photometric observations have been obtained. Light curves have been derived with both profile fitting photometry and image subtraction. We developed a simple method to convert flux phase curves to magnitudes, which allows the use of empirical light curve shape vs. physical parameters calibrations. Periods and light curve parameters of the detected variable stars have been determined with Fourier analysis, phase dispersion minimization and string-length minimization. Using the RR Lyrae metallicity and luminosity calibrations, we have determined the relative iron abundances and absolute magnitudes of the stars. The color–magnitude diagram has been fitted with Yale-Yonsei isochrones to determine reddening and distance independently. For five RR Lyrae stars we obtained radial velocity measurements from optical spectra. Results.We found 45 RR Lyr stars, of which the majority are new discoveries. While most of them are cluster members, as shown by their radial velocities and positions in the color–magnitude diagram, we also see a few stars in the galactic field and in the outskirts of the SMC. About half of the RR Lyraes exhibit light curve changes (Blazhko effect). The RR Lyrae-based metallicity of the cluster is ${\rm [Fe/H]}=-1.16\pm0.25$, the mean absolute magnitude of the RR Lyrae stars is $M_{\rm V}=0.82\pm0.04$ mag implying a distance of $7.9\pm0.6$ kpc. The mean period of RRab stars is $0.585\pm0.081$ days. These properties place NGC 362 among the Oosterhoff type I globular clusters. The isochrone fit implies a slightly larger distance of $9.2\pm0.5$ kpc and an age of $11\pm1$ Gyr. We also found 11 eclipsing binaries, 14 pulsating stars of other types, including classical Cepheids in the SMC and 15 variable stars with no firm classification. Conclusions.NGC 362 hosts a large number of RR Lyrae stars, which makes the cluster a potentially important test object for studying the Blazhko effect in a chemically homogeneous environment. |
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AbstractList | Aims. NGC 362 is a bright southern globular cluster in the foreground of the Small Magellanic Cloud (SMC), for which no extensive variability survey has ever been done. Finding regularly pulsating RR Lyrae stars in the cluster can lead to improved metallicity and distance estimates of the system, while other types of variable objects may be used to confirm the results. Methods. Time-series CCD photometric observations have been obtained. Light curves have been derived with both profile fitting photometry and image subtraction. We developed a simple method to convert flux phase curves to magnitudes, which allows the use of empirical light curve shape vs. physical parameters calibrations. Periods and light curve parameters of the detected variable stars have been determined with Fourier analysis, phase dispersion minimization and string-length minimization. Using the RR Lyrae metallicity and luminosity calibrations, we have determined the relative iron abundances and absolute magnitudes of the stars. The color-magnitude diagram has been fitted with Yale-Yonsei isochrones to determine reddening and distance independently. For five RR Lyrae stars we obtained radial velocity measurements from optical spectra. Results. We found 45 RR Lyr stars, of which the majority are new discoveries. While most of them are cluster members, as shown by their radial velocities and positions in the color- magnitude diagram, we also see a few stars in the galactic field and in the outskirts of the SMC. About half of the RR Lyraes exhibit light curve changes (Blazhko effect). The RR Lyrae-based metallicity of the cluster is {\rm [Fe/H]}=-1.16\pm0.25, the mean absolute magnitude of the RR Lyrae stars is M_{\rm V}=0.82\pm0.04 mag implying a distance of 7.9\pm0.6 kpc. The mean period of RRab stars is 0.585\pm0.081 days. These properties place NGC 362 among the Oosterhoff type I globular clusters. The isochrone fit implies a slightly larger distance of 9.2\pm0.5 kpc and an age of 11\pm1 Gyr. We also found 11 eclipsing binaries, 14 pulsating stars of other types, including classical Cepheids in the SMC and 15 variable stars with no firm classification. Conclusions. NGC 362 hosts a large number of RR Lyrae stars, which makes the cluster a potentially important test object for studying the Blazhko effect in a chemically homogeneous environment. Aims.NGC 362 is a bright southern globular cluster in the foreground of the Small Magellanic Cloud (SMC), for which no extensive variability survey has ever been done. Finding regularly pulsating RR Lyrae stars in the cluster can lead to improved metallicity and distance estimates of the system, while other types of variable objects may be used to confirm the results. Methods.Time-series CCD photometric observations have been obtained. Light curves have been derived with both profile fitting photometry and image subtraction. We developed a simple method to convert flux phase curves to magnitudes, which allows the use of empirical light curve shape vs. physical parameters calibrations. Periods and light curve parameters of the detected variable stars have been determined with Fourier analysis, phase dispersion minimization and string-length minimization. Using the RR Lyrae metallicity and luminosity calibrations, we have determined the relative iron abundances and absolute magnitudes of the stars. The color–magnitude diagram has been fitted with Yale-Yonsei isochrones to determine reddening and distance independently. For five RR Lyrae stars we obtained radial velocity measurements from optical spectra. Results.We found 45 RR Lyr stars, of which the majority are new discoveries. While most of them are cluster members, as shown by their radial velocities and positions in the color–magnitude diagram, we also see a few stars in the galactic field and in the outskirts of the SMC. About half of the RR Lyraes exhibit light curve changes (Blazhko effect). The RR Lyrae-based metallicity of the cluster is ${\rm [Fe/H]}=-1.16\pm0.25$, the mean absolute magnitude of the RR Lyrae stars is $M_{\rm V}=0.82\pm0.04$ mag implying a distance of $7.9\pm0.6$ kpc. The mean period of RRab stars is $0.585\pm0.081$ days. These properties place NGC 362 among the Oosterhoff type I globular clusters. The isochrone fit implies a slightly larger distance of $9.2\pm0.5$ kpc and an age of $11\pm1$ Gyr. We also found 11 eclipsing binaries, 14 pulsating stars of other types, including classical Cepheids in the SMC and 15 variable stars with no firm classification. Conclusions.NGC 362 hosts a large number of RR Lyrae stars, which makes the cluster a potentially important test object for studying the Blazhko effect in a chemically homogeneous environment. |
Author | Székely, P. Szatmáry, K. Kiss, L. L. Derekas, A. Csák, B. Jackson, R. |
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Cites_doi | 10.1086/323711 10.1086/380938 10.1086/116743 10.1086/323719 10.1086/505745 10.1086/340185 10.1086/424966 10.1086/426325 10.1051/0004-6361:20031381 10.1086/190116 10.1086/305772 10.1086/341992 10.1051/0004-6361:20031003 10.1086/342739 10.1086/190947 10.1086/118116 10.1086/301544 10.1086/310160 10.1086/319411 10.1051/aas:2000214 10.1086/430723 10.1086/116242 10.1086/504514 10.1086/190837 10.1051/0004-6361:20010525 10.1086/324449 10.1051/0004-6361:20010346 10.1093/mnras/234.1.87 10.1086/301089 10.1086/156444 10.1086/165152 10.1086/427987 10.1086/169326 10.1146/annurev.aa.17.090179.000445 10.1051/0004-6361:20041784 10.1007/978-94-015-9698-5_3 10.1111/j.1365-2966.2004.08343.x 10.1086/316815 10.1146/annurev.astro.43.072103.150612 10.1086/301232 |
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Keywords | Eclipsing binary stars stars: variables: general Variability Light curves Luminosity Phase analysis Pulsating variable stars Small Magellanic Cloud Stellar magnitude Classification Color-magnitude diagrams stars: variables: RR Lyr Radial velocity Age Photometry Optical spectrum Photometric observation globular clusters: individual: NGC 362 Isochrone Cepheids Absolute magnitude Time series Abundance Fourier analysis Globular clusters RR Lyrae stars Metallicity Physical parameter Positions |
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Snippet | Aims.NGC 362 is a bright southern globular cluster in the foreground of the Small Magellanic Cloud (SMC), for which no extensive variability survey has ever... Aims. NGC 362 is a bright southern globular cluster in the foreground of the Small Magellanic Cloud (SMC), for which no extensive variability survey has ever... |
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SubjectTerms | Astronomy Earth, ocean, space Exact sciences and technology globular clusters: individual: NGC 362 stars: variables: general stars: variables: RR Lyr |
Title | RR Lyrae stars in the southern globular cluster NGC 362 |
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