4.7 Article

Physical parameters and the projection factor of the classical Cepheid in the binary system OGLE-LMC-CEP-0227

Journal

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY
Volume 436, Issue 2, Pages 953-967

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/mnras/stt1529

Keywords

binaries: eclipsing; stars: distances; stars: oscillations; stars: variables: Cepheids

Funding

  1. Polish National Science Center [MAESTRO 2012/06/A/ST9/00269]
  2. Foundation for Polish Science (FNP)
  3. BASAL Centro de Astrofisica y Tecnologias Afines (CATA) [PFB-06/2007]
  4. FONDECYT [3130361]
  5. Polish NSC [UMO-2011/01/M/ST9/05914]
  6. NASA
  7. European Research Council under the European Community [246678]

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A novel method of analysis of double-lined eclipsing binaries containing a radially pulsating star is presented. The combined pulsating-eclipsing light curve is built up from a purely eclipsing light-curve grid created using an existing modelling tool. For every pulsation phase, the instantaneous radius and surface brightness are taken into account, being calculated from the disentangled radial velocity curve of the pulsating star and from its out-of-eclipse pulsational light curve and the light ratio of the components, respectively. The best model is found using the Markov chain Monte Carlo method. The method is applied to the eclipsing binary Cepheid OGLE-LMC-CEP-0227 (P-puls = 3.80 d, P-orb = 309 d). We analyse a set of new spectroscopic and photometric observations for this binary, simultaneously fitting OGLE V-band, I-band and Spitzer 3.6 mu m photometry. We derive a set of fundamental parameters of the system significantly improving the precision comparing to the previous results obtained by our group. The Cepheid mass and radius are M-1 = 4.165 +/- 0.032 M-circle dot and R-1 = 34.92 +/- 0.34 R-circle dot, respectively. For the first time a direct, geometrical and distance-independent determination of the Cepheid projection factor is presented. The value p = 1.21 +/- 0.03(stat.) +/- 0.04(syst.) is consistent with theoretical expectations for a short-period Cepheid and interferometric measurements for delta Cep. We also find a very high value of the optical limb darkening coefficients for the Cepheid component, in strong disagreement with theoretical predictions for static atmospheres at a given surface temperature and gravity.

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