Spectroscopic and physical parameters of Galactic O-type stars. I. Effects of rotation and spectral resolving power in the spectral classification of dwarfs and giants
arXiv:1103.3357 · doi:10.1051/0004-6361/201015956
Abstract
The modern-era spectral classification of O-stars relies on either the Walborn or the Conti-Mathys scheme. Since both of these approaches have been developed using low-quality photographic data, their application to high-quality digital data might not be straightforward and be hampered by problems and complications that have not yet been appreciated. Using high-resolution spectra obtained with the ESO/MPG 2.2\,m telescope in La Silla and following the premises of the Walborn and Conti classification schemes, we determined the spectral types and luminosity classes of 19 Galactic O-type stars and compared them to those attributed by Walborn and Mathys based on low-quality data. Our analysis reveals that the morphological spectral types assigned using high-resolution data are systematically later (by up to 1.5 subtypes) then those attributed by Walborn. By means of line-profile simulations, we show that part of this discrepancy is more likely caused by the combined effect of stellar rotation and high spectral resolution on the depth of helium lines used as spectral type indicators. In addition, we demonstrate that at least for narrow-lined stars the "rotational effect" does not disappear when the high-resolution spectra are degraded to the resolution of the Walborn standards. We also find evidence of a systematic difference between our high-resolution quantitative spectral types and those assigned by Mathys. Rotation and spectral resolution are important third parameters in the spectral classification of O-type stars. To obtain reliable spectral classes within the Walborn approach, the unknown and the standard spectra must be compared at the same resolution and \vsini. Owing to resolution effects, the Conti approach might also need to be updated.
paper accepted for publication in A&A
References in corpus (5)
- Mass loss from hot massive stars
- The High Angular Resolution Multiplicity of Massive Stars
- The VLT-FLAMES Survey of Massive Stars: Stellar parameters and rotational velocities in NGC3293, NGC4755 and NGC6611
- Adaptive Optics Photometry and Astrometry of Binary Stars. III. A Faint Companion Search of O-Star Systems
- A FUSE Survey of the Rotation Rates of Very Massive Stars in the Small and Large Magellanic Clouds
Cited by in corpus (14)
- Spectroscopic and physical parameters of Galactic O-type stars. III. Mass discrepancy and rotational mixing
- Nitrogen line spectroscopy in O-stars -- III. The earliest O-stars
- The VLT-FLAMES Tarantula Survey. VII. A low velocity dispersion for the young massive cluster R136
- The VLT-FLAMES Tarantula Survey. XIII: On the nature of O Vz stars in 30 Doradus
- Spectroscopic evolution of massive stars on the main sequence
- Spectroscopic and physical parameters of Galactic O-type stars. II. Observational constraints on projected rotational and extra broadening velocities as a function of fundamental parameters and stellar evolution
- The IACOB project: II. On the scatter of O-dwarf spectral type -- effective temperature calibrations
- Spectral classification and properties of the O Vz stars in the Galactic O-Star Spectroscopic Survey (GOSSS)
- A peculiar Of star in the Local Group galaxy IC 1613
- The IACOB project XII. A new grid of northern standards for the spectral classification of B-type stars
- Distances to Galactic OB-stars: Photometry vs. Parallax
- Dark dust II: Properties in the general field of the diffuse ISM
- The VLT-FLAMES Tarantula Survey XXXII. Low-luminosity late O-type stars -- classification, main physical parameters, and silicon abundances
- A near-UV reconnaissance of metal-poor massive stars