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Related papers: Be stars: one ring to rule them all?

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The observed emission lines of Be stars originate from a circumstellar Keplerian disk that are generally well explained by the Viscous Decretion Disk model. In an earlier work we performed the modeling of the full light curve of the bright…

Solar and Stellar Astrophysics · Physics 2021-03-24 Mohammad R. Ghoreyshi , Alex C. Carciofi , Carol E. Jones , Daniel M. Faes , Dietrich Baade , Thomas Rivinius

Be stars possess gaseous circumstellar disks that modify in many ways the spectrum of the central B star. Furthermore, they exhibit variability at several timescales and for a large number of observables. Putting the pieces together of this…

Solar and Stellar Astrophysics · Physics 2015-06-05 X. Haubois , A. C. Carciofi , Th. Rivinius , A. T. Okazaki , J. E. Bjorkman

Context. Classical Be stars are hot non-supergiant stars surrounded by a gaseous circumstellar disk that is responsible for the observed infrared-excess and emission lines. The phenomena involved in the disk formation still remain highly…

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

It is assumed that Be star discs are driven by viscosity. Emission from disc models is calculated and is confronted with continuum observations. It is found that the outflowing viscous disc models can reproduce the observed IR continuum…

Astrophysics · Physics 2007-05-23 John M. Porter

Be stars are rapidly-rotating B stars that have shown emission lines originating in a circumstellar disk. The mechanisms that lead to disk formation and dissipation are not known although progress has been made with some systems. We present…

Solar and Stellar Astrophysics · Physics 2026-02-09 Sola S. Nova , Noel D. Richardson , Jonathan Labadie-Bartz , Samantha Garcia Flores

Circumstellar discs of Be stars are thought to be formed from material ejected from a fast-spinning central star. This material possesses large amounts of angular momentum and settles in a quasi-Keplerian orbit around the star. This simple…

Solar and Stellar Astrophysics · Physics 2015-05-20 Alex C. Carciofi

Be stars are main-sequence massive stars with emission features in their spectrum, which originates in circumstellar gaseous discs. Even though the viscous decretion disc (VDD) model can satisfactorily explain most observations, two…

Through the modelling of near-infrared photometry of star plus disk systems with the codes BEDISK/BERAY, we successfully describe the WISE photometric characteristics of Be stars in five young open clusters, NGC 663, NGC 869, NGC 884, NGC…

Solar and Stellar Astrophysics · Physics 2018-01-10 A. Granada , C. E. Jones , T. A. A. Sigut , T. Semaan , C. Georgy , G. Meynet , S. Ekström

The spin-down of Be stars due to angular momentum transport from star to disc has been considered. This has been prompted by empirical studies of observed optical and IR line profile studies indicating that the disc is rotating in a…

Astrophysics · Physics 2007-05-23 John M. Porter

Classical Be stars are hot non-supergiant stars surrounded by a gaseous circumstellar disk that is responsible for the observed IR-excess and emission lines. The influence of binarity on these phenomena remains controversial. delta Sco is a…

We use a three-dimensional smoothed particle hydrodynamics code to simulate growth and dissipation of Be star discs in systems where the binary orbit is misaligned with respect to the spin axis of the primary star. We investigate six…

Solar and Stellar Astrophysics · Physics 2021-10-27 M. Suffak , C. E. Jones , A. C. Carciofi

Be stars possess gaseous circumstellar decretion disks, which are well described using standard $\alpha$-disk theory. The Be star 28 CMa recently underwent a long outburst followed by a long period of quiescence, during which the disk…

Be stars are rapidly rotating B main sequence stars, which show line emission due to an outflowing disc. By studying the evolution of rotating single star models, we can assess their contribution to the observed Be star populations. We…

Solar and Stellar Astrophysics · Physics 2020-01-29 Ben Hastings , Chen Wang , Norbert Langer

Hot, massive stars (spectral types O and B) have extreme luminosities ($10^4 -10^6 L_\odot$) that drive strong stellar winds through UV line-scattering. Some massive stars also have disks, formed by either decretion from the star (as in the…

Solar and Stellar Astrophysics · Physics 2015-12-15 N. D. Kee

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

In order to study the growth and evolution of circumstellar disks around classical Be stars, we analyze optical time-series photometry from the KELT survey with simultaneous infrared and visible spectroscopy from the APOGEE survey and BeSS…

Classical Be stars are hot non-supergiant stars surrounded by a gaseous circumstellar disk that is responsible for the observed infrared (IR) excess and emission lines. The influence of binarity on these phenomena remains controversial. We…

Solar and Stellar Astrophysics · Physics 2015-06-12 Anthony Meilland , Philippe Stee , Alain Spang , Fabien Malbet , Fabrizio Massi , Dieter Schertl

A sample of 97 galactic field Be stars were studied by taking into account the effects induced by the fast rotation on their fundamental parameters. All program stars were observed in the BCD spectrophotometric system in order to minimize…

Astrophysics · Physics 2009-11-11 J. Zorec , Yves Fremat , L. Cidale

As the disk formation mechanism(s) in Be stars is(are) as yet unknown, we investigate the role of rapidly rotating radiation-driven winds in this process. We implemented the effects of high stellar rotation on m-CAK models accounting for:…

Solar and Stellar Astrophysics · Physics 2017-08-30 I. Araya , C. E. Jones , M. Curé , J. Silaj , L. Cidale , A. Granada , A. Jiménez
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