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Related papers: The eccentric massive binary V380 Cyg: revised orb…

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We report the discovery of low-amplitude gravity-mode oscillations in the massive binary star V380 Cyg, from 180 d of Kepler custom-aperture space photometry and 5 months of high-resolution high signal-to-noise spectroscopy. The new data…

The eclipsing and double-lined spectroscopic binary V380 Cyg is an extremely important probe of stellar evolution: its primary component is a high-mass star at the brink of leaving the main sequence whereas the secondary star is still in…

Solar and Stellar Astrophysics · Physics 2015-05-13 K. Pavlovski , E. Tamajo , P. Koubsky , J. Southworth , S. Yang , V. Kolbas

We determine the age of the eclipsing binary V380 Cygni, whose components have a significant mass ratio, $M_B/M_A\approx$ 0.6. Because this binary exhibits spectral lines of both components, the values of masses and radii could be…

Solar and Stellar Astrophysics · Physics 2018-12-05 A. Miszuda , J. Daszyńska-Daszkiewicz , W. Szewczuk

We present photometric and spectroscopic data analysis and orbital period study of an early-type interacting binary system V382 Cyg by using all the available data. We made a simultaneous light and radial velocity curve solution. The…

Solar and Stellar Astrophysics · Physics 2012-12-10 Bulent Yasarsoy , Kadri Yakut

New photometric solutions have been carried out on the important eccentric eclipsing system V380 Cygni (B1.5II-III + B2V) from UBV differential photoelectric photometry obtained by us. The photometric elements obtained from the analysis of…

The eclipsing and double-lined spectroscopic binary system V453 Cygni consists of two early B-type stars, one of which is nearing the terminal age main sequence and one which is roughly halfway through its main sequence lifetime. Accurate…

Astrophysics · Physics 2009-11-13 K. Pavlovski , J. Southworth

In recent years the idea, first formulated many decades ago, that the Be phenomenon could be causally related to the duplicity of Be stars, has been repeatedly reconsidered from various perspectives. It is important, therefore, to have…

Solar and Stellar Astrophysics · Physics 2025-07-16 P. Harmanec , S. Yang , P. Koubský , J. Labadie-Bartz , P. Doležal , S. Ranguin , H. Božić , J. Švrčková , M. Zummer , P. Zasche , H. Ak

We present the physical properties of the eclipsing binary V2281 Cyg, which shows a light-time effect due to a supposed tertiary component from its eclipse timing variation according to the $Kepler$ observations. The high-resolution spectra…

Solar and Stellar Astrophysics · Physics 2017-11-29 Jae-Rim Koo , Jae Woo Lee , Kyeongsoo Hong

Binaries in double-lined spectroscopic systems provide a homogeneous set of stars. Differences of parameters, such as age or initial conditions, which otherwise would have strong impact on the stellar evolution, can be neglected. The…

Double-lined spectroscopic orbital elements have recently been found for the central binary in the massive triple, delta Orionis A based on radial velocities from cross-correlation techniques applied to IUE high dispersion spectra and He I…

Thanks to its long and rich observational history and rapid apsidal motion, the massive eclipsing binary Y Cyg represents one of the cornestones to critical tests of stellar evolution theory for massive stars. Yet, the determination of the…

The properties of the interacting, eccentric orbit binary V1507 Cyg (HD187399) are examined with spectra that cover wavelengths from 0.63 to 0.68um. The spectrum of the brightest star is very similar to that of the B8 I star Beta Ori,…

Solar and Stellar Astrophysics · Physics 2023-10-11 T. J. Davidge

We present a comprehensive study of the massive binary system HM1~8, based on multi-epoch high resolution spectroscopy, $V$-band photometry and archival X-ray data. Spectra from the OWN Survey, a high resolution optical monitoring of…

We report new spectroscopic and photometric observations of the main-sequence, detached, eccentric, double-lined eclipsing binary V541 Cyg (P = 15.34 days, e = 0.468). Using these observations together with existing measurements we…

Solar and Stellar Astrophysics · Physics 2017-02-22 G. Torres , C. D. McGruder , R. J. Siverd , J. E. Rodriguez , J. Pepper , D. J. Stevens , K. G. Stassun , M. B. Lund , D. James

A prerequisite for probing theortical evolutionary models for high-mass stars is the determination of stellar physical properties with a high accuracy. We do this for three binary systems containing components with masses above 10 Msun:…

Solar and Stellar Astrophysics · Physics 2018-09-26 K. Pavlovski , J. Southworth , E. Tamajo

We study the stars of the binary system 16 Cygni to determine with high precision their chemical composition. Knowing that the component B has a detected planet of at least 1.5 Jupiter masses, we investigate if there are chemical…

Solar and Stellar Astrophysics · Physics 2015-06-22 Marcelo Tucci Maia , Jorge Melendez , Ivan Ramirez

Mass discrepancy is one of the problems that is pending a solution in (massive) binary star research field. The problem is often solved by introducing an additional near core mixing into evolutionary models, which brings theoretical masses…

Solar and Stellar Astrophysics · Physics 2015-06-22 A. Tkachenko

Three presumably young eclipsing binary systems in the direction of the Cygnus OB1, OB3 and OB9 associations are studied. Component spectra are reconstructed and their orbits are determined using light curves and spectra disentangling…

Solar and Stellar Astrophysics · Physics 2015-06-19 V. Bakis , H. Hensberge , S. Bilir , H. Bakis , F. Yilmaz , E. Kiran , O. Demircan , M. Zejda , Z. Mikulasek

We report spectroscopic observations of the 2.63 day, detached, F-type main-sequence eclipsing binary V2154 Cyg. We use our observations together with existing $uvby$ photometric measurements to derive accurate absolute masses and radii for…

Solar and Stellar Astrophysics · Physics 2017-11-29 Jane C. Bright , Guillermo Torres

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
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