4.6 Article

An in-depth study of HD 174966 with CoRoT photometry and HARPS spectroscopy Large separation as a new observable for δ Scuti stars

期刊

ASTRONOMY & ASTROPHYSICS
卷 559, 期 -, 页码 -

出版社

EDP SCIENCES S A
DOI: 10.1051/0004-6361/201220256

关键词

asteroseismology; stars: oscillations; stars: variables: delta Scuti; stars: interiors; stars: fundamental parameters; stars: rotation

资金

  1. project Participacion espanola en la mision CoRoT [BES2005-8478, ESP2004-3855-C03-01]
  2. FCT (Portugal) [SFRH/BPD/80619/2011, PTDC/CTE-AST/098754/2008]
  3. AstroMadrid [CAM S2009/ESP-1496]
  4. Spanish grants [ESP2007-65475-C02-02, AYA 2010-21161-C02-02]
  5. Spanish National Research Plan [ESP2010-20982-C02-01, AYA2010-12030-E]
  6. Italian PRIN-INAF
  7. Ministry of Economy and Competitiveness [AYA2010-14840]
  8. Spanish National Plan of RD [AYA2010-17803]
  9. Spanish Virtual Observatory
  10. Spanish MICINN
  11. MINECO [AyA2008-02156, AyA2011-24052]
  12. GRID-CSIC Project [200450E494]
  13. Junta de Andalucia
  14. Spanish Direccion General de Investigacion (DGI) [AYA2009-10394]

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Aims. The aim of this work was to use a multi-approach technique to derive the most accurate values possible of the physical parameters of the delta Sct star HD 174966, which was observed with the CoRoT satellite. In addition, we searched for a periodic pattern in the frequency spectra with the goal of using it to determine the mean density of the star. Methods. First, we extracted the frequency content from the CoRoT light curve. Then, we derived the physical parameters of HD 174966 and carried a mode identification out from the spectroscopic and photometric observations. We used this information to look for the models fulfilling all the conditions and discussed the inaccuracies of the method because of the rotation effects. In a final step, we searched for patterns in the frequency set using a Fourier transform, discussed its origin, and studied the possibility of using the periodicity to obtain information about the physical parameters of the star. Results. A total of 185 peaks were obtained from the Fourier analysis of the CoRoT light curve, all of which were reliable pulsating frequencies. From the spectroscopic observations, 18 oscillation modes were detected and identified, and the inclination angle (62.5 degrees(+7.5)(-17.5)) and the rotational velocity of the star (142 km s(-1)) were estimated. From the multi-colour photometric observations, only three frequencies were detected that correspond to the main ones in the CoRoT light curve. We looked for periodicities within the 185 frequencies and found a quasiperiodic pattern Delta v similar to 64 mu Hz. Using the inclination angle, the rotational velocity, and an Echelle diagram (showing a double comb outside the asymptotic regime), we concluded that the periodicity corresponds to a large separation structure. The quasiperiodic pattern allowed us to discriminate models from a grid. As a result, the value of the mean density is achieved with a 6% uncertainty. So, the Delta v pattern could be used as a new observable for A-F type stars.

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