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Related papers: The Massive Wolf-Rayet Binary HDE318016 (=WR 98)

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We present the discovery of OB type absorption lines superimposed to the emission line spectrum and the first double-lined orbital elements for the massive Wolf-Rayet binary HDE 318016 (=WR 98), a spectroscopic binary in a circular orbit…

Astrophysics · Physics 2009-11-07 Roberto C. Gamen , Virpi S. Niemela

We present a study of optical spectra of the Wolf--Rayet star AzV 336a (= SMC WR7) in the Small Magellanic Cloud. Our study is based on data obtained at several Observatories between 1988 and 2001. We find SMC WR7 to be a double lined WN+O6…

Astrophysics · Physics 2009-11-07 V. S. Niemela , P. Massey , G. Testor , S. Gimenez Benitez

Double-lined spectroscopic binary systems, containing a Wolf-Rayet and a massive O-type star, are key objects for the study of massive star evolution because these kinds of systems allow the determination of fundamental astrophysical…

Solar and Stellar Astrophysics · Physics 2015-09-25 A. Collado , R. Gamen , R. H. Barbá , N. Morrell

Since the discovery, with the EINSTEIN satellite, of strong X-ray emission associated with HD93162 (=WR25), this object has been predicted to be a colliding-wind binary system. However, radial-velocity variations that would prove the…

Astrophysics · Physics 2020-12-09 R. Gamen , E. Gosset , N. Morrell , V. Niemela , H. Sana , Y. Naze , G. Rauw , R. Barba , G. Solivella

We present the results of an optical spectroscopic study of the massive Wolf-Rayet binary WR137. These data cover the dust-formation maximum in 1997. Combining all available measurements of radial velocities, we derive, for the first time,…

From the radial velocities of the N IV 4058 and He II 4686 emission lines, and the N V 4604-20 absorption lines, determined in digital spectra, we report the discovery that the X-ray bright emission line star Wack 2134 (= WR 21a) is a…

The binary star HD 45166 has been observed since 1922 but its orbital period has not yet been found. It is considered a peculiar Wolf-Rayet star, and its assigned classification varied along the years. High-resolution spectroscopic…

Astrophysics · Physics 2007-05-23 J. E. Steiner , Alexandre Oliveira

Wolf-Rayet (WR) stars are helium-burning, evolved massive stars which have had most of their hydrogen-rich outer layers removed either through stellar winds and/or binary stripping. Here we report on LMC173-1, a WN3+O binary located in the…

The hot star HDE 326823 is a candidate transition-phase object that is evolving into a nitrogen-enriched Wolf-Rayet star. It is also a known low-amplitude, photometric variable with a 6.123 d period. We present new, high and moderate…

Solar and Stellar Astrophysics · Physics 2015-05-30 Noel D. Richardson , Douglas R. Gies , Stephen J. Williams

We present the results of optical wavelength observations of the unusual SMC eclipsing binary system HD 5980 obtained in 1999 and 2004--2005. Radial velocity curves for the erupting LBV/WR object (star A) and its close WR-like companion…

Wolf-Rayet stars represent one of the final stages of massive stellar evolution. Relatively little is known about this short-lived phase and we currently lack reliable mass, distance, and binarity determinations for a representative sample.…

Classical Wolf-Rayet stars are descendants of massive OB-type stars that have lost their hydrogen-rich envelopes, and are in the final stages of stellar evolution, possibly exploding as type Ib/c supernovae. It is understood that the…

LMCe055-1 was recently discovered in a survey for WRs in the Large Magellanic Cloud, and classified as a WN4/O4, a lower excitation version of the WN3/O3 class discovered as part of the same survey. Its absolute magnitude precluded it from…

Solar and Stellar Astrophysics · Physics 2024-10-17 Philip Massey , Kathryn F. Neugent , Nidia I. Morrell , Desmond John Hillier , Laura R. Penny

HD 45166 was recently reported to be a long-period binary comprising a B7V star and a highly magnetic ($\langle B \rangle = 43.0\pm0.5\,$kG) hot Wolf-Rayet-like component, dubbed as a quasi Wolf-Rayet (qWR) star in literature. While…

Solar and Stellar Astrophysics · Physics 2025-03-26 K. Deshmukh , T. Shenar , A. Mérand , H. Sana , P. Marchant , G. A. Wade , J. Bodensteiner , A. -N. Chené , A. J. Frost , A. Gilkis , N. Langer , L. Oskinova

Context. A significant number of the Wolf-Rayet stars seem to be binary or multiple systems, but the nature of many of them is still unknown. Dedicated monitoring of WR stars favours the discovery of new systems. Aims. We explore the…

Solar and Stellar Astrophysics · Physics 2015-06-15 A. Collado , R. Gamen , R. H. Barbá

We present radial velocity observations of four binary white dwarf candidates identified through their over-luminosity. We identify two new double-lined spectroscopic binary systems, WD 0311-649 and WD 1606+422, and constrain their orbital…

Solar and Stellar Astrophysics · Physics 2020-02-26 Mukremin Kilic , A. Bedard , P. Bergeron , Alekzander Kosakowski

We present the first orbital elements for the massive close binary, HD 115071, a double-lined spectroscopic binary in a circular orbit with a period of 2.73135 +/- 0.00003 days. The orbital semiamplitudes indicate a mass ratio of M_2/M_1 =…

Astrophysics · Physics 2009-11-07 L. R. Penny , D. R. Gies , J. H. Wise , D. J. Stickland , C. Lloyd

We have discovered a detached pair of white dwarfs (WDs) with a 12.75 min orbital period and a 1,315 km/s radial velocity amplitude. We measure the full orbital parameters of the system using its light curve, which shows ellipsoidal…

Astrophysics of Galaxies · Physics 2015-05-28 Warren R. Brown , Mukremin Kilic , J. J. Hermes , Carlos Allende Prieto , Scott J. Kenyon , D. E. Winget

We present the discovery of the eclipsing double white dwarf (WD) binary WDJ 022558.21-692025.38 that has an orbital period of 47.19 min. Following identification with the Transiting Exoplanet Survey Satellite, we obtained time-series…

Classical Wolf-Rayet stars are the descendants of massive OB stars that have lost their hydrogen envelopes and are burning helium in their cores prior to exploding as type Ib/c supernovae. The mechanisms for losing their hydrogen envelopes…

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