4.7 Article

Optical interferometry of early-type stars with PAVO@CHARA - I. Fundamental stellar properties

期刊

出版社

OXFORD UNIV PRESS
DOI: 10.1093/mnras/stt1092

关键词

techniques: interferometric; stars: early-type; stars: fundamental parameters

资金

  1. NASA [NAS5-26555]
  2. NASA Office of Space Science [NAG5-7584]
  3. National Aeronautics and Space Administration
  4. National Science Foundation [AST-0606958]
  5. Georgia State University through the College of Arts and Sciences
  6. W. M. Keck Foundation
  7. Australian Research Council
  8. Direct For Mathematical & Physical Scien
  9. Division Of Astronomical Sciences [1211929] Funding Source: National Science Foundation
  10. Division Of Astronomical Sciences
  11. Direct For Mathematical & Physical Scien [908253] Funding Source: National Science Foundation

向作者/读者索取更多资源

We present interferometric observations of seven main-sequence and three giant stars with spectral types from B2 to F6 using the Precision Astronomical Visible Observations beam combiner at the Center for High Angular Resolution Astronomy array. We have directly determined the angular diameters for these objects with an average precision of 2.3 per cent. We have also computed bolometric fluxes using available photometry in the visible and infrared wavelengths, as well as space-based ultraviolet spectroscopy. Combined with precise Hipparcos parallaxes, we have derived a set of fundamental stellar properties including linear radius, luminosity and effective temperature. Fitting the latter to computed isochrone models, we have inferred masses and ages of the stars. The effective temperatures obtained are in good agreement (at a 3 per cent level) with nearly independent temperature estimations from spectroscopy. They validate recent sixth-order polynomial (B - V) - T-eff empirical relations, but suggest that a more conservative third-order solution could adequately describe the (V - K) - T-eff relation for main-sequence stars of spectral types A0 and later. Finally, we have compared mass values obtained combining surface gravity with inferred stellar radius (gravity mass) and as a result of the comparison of computed luminosity and temperature values with stellar evolutionary models (isochrone mass). The strong discrepancy between isochrone and gravity masses obtained for one of the observed stars, gamma Lyr, suggests that determination of the stellar atmosphere parameters should be revised.

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