A number of strong infrared forbidden lines have been observed in several evolved Wolf–Rayet (WR) star winds, and these are important for deriving metal abundances and testing stellar evolution models. In addition, because these optically thin lines form at large radius in the wind, their resolved profiles carry an imprint of the asymptotic structure of the wind flow. This work presents model forbidden line profile shapes formed in axisymmetric winds. It is well known that an optically thin emission line formed in a spherical wind expanding at constant velocity yields a flat-topped emission profile shape. Simulated forbidden lines are produced for a model stellar wind with an axisymmetric density distribution that treats the latitudinal ion...
We consider the consequences of appreciable line optical depth for the profile shape of X-ray emissi...
One of the most intriguing spectral features of Wolf-Rayet (WR) binary stars is the presence of time...
In dense hot star winds, the infrared and radio continua are dominated by free‐free opacity and reco...
A number of strong infrared forbidden lines have been observed in several evolved Wolf–Rayet (WR) st...
A number of strong infrared forbidden lines have been observed in several evolved Wolf-Rayet star wi...
This paper presents calculations for forbidden emission-line profile shapes arising from colliding w...
Recombination line profile shapes are derived for ionized spherical stellar winds at radio wavelengt...
We present theoretical calculations of emission line profile variability based on hot star wind stru...
We compute the P Cyg line profiles formed by the stellar winds of binary systems containing a Wolf-...
We investigate the effects on the emission profile of a Wolf-Rayet (WR) wind colliding with an O sta...
Motivated by recent detections by the XMM and Chandra satellites of X-ray line emission from hot, lu...
Recombination line profile shapes are derived for ionized spherical stellar winds at radio wavelengt...
We present theoretical X-ray line profiles from a range of model colliding wind systems. In particul...
The study of Wolf-Rayet stars plays an important role in evolutionary theories of massive stars. Amo...
We consider the consequences of appreciable line optical depth for the profile shape of X-ray emissi...
One of the most intriguing spectral features of Wolf-Rayet (WR) binary stars is the presence of time...
In dense hot star winds, the infrared and radio continua are dominated by free‐free opacity and reco...
A number of strong infrared forbidden lines have been observed in several evolved Wolf–Rayet (WR) st...
A number of strong infrared forbidden lines have been observed in several evolved Wolf-Rayet star wi...
This paper presents calculations for forbidden emission-line profile shapes arising from colliding w...
Recombination line profile shapes are derived for ionized spherical stellar winds at radio wavelengt...
We present theoretical calculations of emission line profile variability based on hot star wind stru...
We compute the P Cyg line profiles formed by the stellar winds of binary systems containing a Wolf-...
We investigate the effects on the emission profile of a Wolf-Rayet (WR) wind colliding with an O sta...
Motivated by recent detections by the XMM and Chandra satellites of X-ray line emission from hot, lu...
Recombination line profile shapes are derived for ionized spherical stellar winds at radio wavelengt...
We present theoretical X-ray line profiles from a range of model colliding wind systems. In particul...
The study of Wolf-Rayet stars plays an important role in evolutionary theories of massive stars. Amo...
We consider the consequences of appreciable line optical depth for the profile shape of X-ray emissi...
One of the most intriguing spectral features of Wolf-Rayet (WR) binary stars is the presence of time...
In dense hot star winds, the infrared and radio continua are dominated by free‐free opacity and reco...