Imaging and Modeling Rapidly Rotating Stars: Alpha Cephei and Alpha Ophiuchi
arXiv:0906.2241 · doi:10.1088/0004-637X/701/1/209
Abstract
We present sub-milliarcseond resolution imaging and modeling of two nearby rapid rotators Alpha Cephei and Alpha Ophiuchi, obtained with the CHARA array - the largest optical/IR interferometer in the world. Incorporating a gravity darkening model, we are able to determine the inclination, the polar and equatorial radius and temperature, as well as the fractional rotation speed of the two stars with unprecedented precision. The polar and equatorial regions of the two stars have ~2000K temperature gradient, causing their apparent temperatures and luminosities to be dependent on their viewing angles. Our modeling allow us to determine the true effective temperatures and luminosities of Alpha Cep and Alpha Oph, permitting us to investigate their true locations on the H-R diagram. These properties in turn give us estimates of the masses and ages of the two stars within a few percent of error using stellar evolution models. Also, based on our gravity darkening modeling, we propose a new method to estimate the masses of single stars in a more direct way through Vsin(i) measurements and precise geometrical constraint. Lastly, we investigate the degeneracy between the inclination and the gravity darkening coefficient, which especially affects the modeling of Alpha Oph. Although incorporating Vsin(i) has lifted the degeneracy to some extent, higher resolution observations are still needed to further constrain the parameters independently.
36 pages, 14 figures, accepted by ApJ
References in corpus (7)
- Imaging the Surface of Altair
- Effects of gravitational darkening on the determination of fundamental parameters in fast rotating B-type stars
- Vega is a rapidly rotating star
- First Results from the CHARA Array VII: Long-Baseline Interferometric Measurements of Vega Consistent with a Pole-On, Rapidly Rotating Star
- On the Structure and Properties of Differentially Rotating Main-Sequence Stars in the 1-2 M_sun Range
- Monte-Carlo Imaging for Optical Interferometry
- The effect of rotation on the spectrum of Vega
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