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Related papers: VLTI/GRAVITY enables the determination of the firs…

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Context: [abbreviated] Aims: Kepler data of three known Be stars are re-visited to establish their pulsational nature and assess the properties of additional, non-pulsational variations. The three program stars turned out to be one inactive…

Solar and Stellar Astrophysics · Physics 2016-10-05 Thomas Rivinius , Dietrich Baade , Alex Carciofi

Close binary interactions may play a critical role in the formation of the rapidly rotating Be stars. Mass transfer can result in a mass gainer star spun up by the accretion of mass and angular momentum, while the mass donor is stripped of…

Solar and Stellar Astrophysics · Physics 2023-04-26 Luqian Wang , Douglas R. Gies , Geraldine J. Peters , Zhanwen Han

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

Achernar, the closest and brightest classical Be star, presents rotational flattening, gravity darkening, occasional emission lines due to a gaseous disk, and an extended polar wind. It is also a member of a close binary system with an…

O-stars are known to experience a wide range of variability mechanisms originating at both their surface and their near-core regions. Characterization and understanding of this variability and its potential causes are integral for…

Be stars are rapid rotators surrounded by a gaseous disk envelope whose origin is still under debate. This envelope is responsible for observed emission lines and large infrared excess. To progress in the understanding of the physical…

Solar and Stellar Astrophysics · Physics 2019-01-16 Y. R. Cochetti , C. Arcos , S. Kanaan , A. Meilland , L. S. Cidale , M. Curé

HR\,8799 is a young planetary system composed of 4 planets and a double debris belt. Being the first multi-planetary system discovered with the direct imaging technique, it has been observed extensively since 1998. This wide baseline of…

The intriguing binary LS V +22 25 (LB-1) has drawn much attention following claims of it being a single-lined spectroscopic binary with a 79-day orbit comprising a B-type star and a ~70 Msun black hole. Recent analyses have implied that the…

Solar and Stellar Astrophysics · Physics 2020-07-15 T. Shenar , J. Bodensteiner , M. Abdul-Masih , M. Fabry , L. Mahy , P. Marchant , G. Banyard , D. M. Bowman , K. Dsilva , C. Hawcroft , M. Reggiani , H. Sana

Hot subdwarf stars represent a late and peculiar stage in the evolution of low-mass stars, because they are likely formed by close binary interactions. Here we performed a radial velocity (RV) variability study of a sample of 646 hot…

Solar and Stellar Astrophysics · Physics 2022-05-18 S. Geier , M. Dorsch , I. Pelisoli , N. Reindl , U. Heber , A. Irrgang

The rapidly rotating Be star phi Persei was spun up by mass and angular momentum transfer from a now stripped-down, hot subdwarf companion. Here we present the first high angular resolution images of phi Persei made possible by new…

HR 7409 (7 Vul) is a newly identified Be star possibly part of the Gould Belt and is the massive component of a 69-day spectroscopic binary. The binary parameters and properties of the Be star measured using high-dispersion spectra obtained…

Solar and Stellar Astrophysics · Physics 2015-05-27 S. Vennes , A. Kawka , S. Jonic , I. Pirkovic , L. Iliev , J. Kubat , M. Slechta , P. Nemeth , M. Kraus

The presence of stable, compact circumbinary discs of gas and dust around post-asymptotic giant branch (post-AGB) binary systems has been well established. We focus on one such system: IRAS 08544-4431. We present an interferometric…

Solar and Stellar Astrophysics · Physics 2021-06-16 A. Corporaal , J. Kluska , H. Van Winckel , D. Bollen , D. Kamath , M. Min

We study the Be star $\delta$ Cen circumstellar disk using long-baseline interferometry which is the only observing technique capable of resolving spatially and spectroscopically objects smaller than 5 mas in the H and K b and. We used the…

Reliable determination of the basic physical properties of hot emission-line binaries with Roche-lobe filling secondaries is important for developing the theory of mass exchange in binaries. It is a very hard task, however, which is…

The companion GL229B was recently resolved by Xuan et al. (2024) as a tight binary of two brown dwarfs (Ba and Bb) through VLTI-GRAVITY interferometry and VLT-CRIRES+ RV measurements. Here, we present Bayesian models of the interferometric…

Context. Most massive stars are in binary or multiple systems. Several massive stars have been detected as doublelined spectroscopic binaries and among these, the OWN Survey has detected a non-negligible number whose components show very…

Solar and Stellar Astrophysics · Physics 2018-10-31 C. Putkuri , R. Gamen , N. I. Morrell , S. Simón-Díaz , R. H. Barbá , G. A. Ferrero , J. I. Arias , G. Solivella

The recently discovered magnetic Herbig Ae and Be stars may provide qualitatively new information about the formation and evolution of magnetic Ap and Bp stars. We have performed a detailed investigation of one particularly interesting…

In the past, SDSS J160429.12+100002.2 was spectroscopically classified as a blue horizontal branch (BHB) star. Assuming a luminosity that is characteristic of BHB stars, the object's radial velocity and proper motions from Gaia Early Data…

Solar and Stellar Astrophysics · Physics 2021-06-22 Andreas Irrgang , Stephan Geier , Ulrich Heber , Thomas Kupfer , Kareem El-Badry , Steven Bloemen