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Context. Luminous blue variables (LBVs) are rare massive stars with very high luminosity. They are characterized by strong photo-metric and spectroscopic variability related to transient eruptions. The mechanisms at the origin of these…

Aims: The X-ray emission of massive stars has been studied when these objects are in their main-sequence phase, as well as in their Wolf-Rayet phase. However, the X-ray properties of the transitional Luminous Blue Variable (LBV) phase…

Solar and Stellar Astrophysics · Physics 2012-09-26 Yael Naze , Gregor Rauw , Damien Hutsemekers

Luminous Blue Variables (LBVs) are massive stars caught in a post-main sequence phase, during which they are losing a significant amount of mass. As, on one hand, it is thought that the majority of massive stars are close binaries that will…

Based on their relatively isolated environments, we argue that LBVs must be primarily the product of binary evolution, challenging the traditional single-star view wherein LBVs mark a brief transition between massive O stars and Wolf-Rayet…

Solar and Stellar Astrophysics · Physics 2015-06-22 Nathan Smith , Ryan Tombleson

Observations show that luminous blue variables (LBVs) are far more dispersed than massive O-type stars, and Smith & Tombleson suggested that these large separations are inconsistent with a single-star evolution model of LBVs. Instead, they…

Solar and Stellar Astrophysics · Physics 2017-09-28 Mojgan Aghakhanloo , Jeremiah W. Murphy , Nathan Smith , Renée Hložek

In the standard view of massive star evolution, luminous blue variables (LBVs) are transitional objects between the most massive O-type stars and Wolf-Rayet (WR) stars. With short lifetimes, these stars should all be found near one another.…

Solar and Stellar Astrophysics · Physics 2019-01-04 Erin Aadland , Philip Massey , Kathryn F. Neugent , Maria R. Drout

Luminous Blue Variables (LBVs) are a class of massive blue supergiants exhibiting irregular and eruptive instability, sometimes accompanied by extreme mass loss. While they have often been considered to be a brief but very important…

Solar and Stellar Astrophysics · Physics 2025-09-30 Nathan Smith

In the current paper, we present a study of the spatial distribution of luminous blue variables (LBVs) and various LBV candidates (cLBVs) with respect to OB associations in the M33 galaxy. The identification of blue star groups was based on…

Astrophysics of Galaxies · Physics 2026-03-25 A. Kostenkov , S. Fabrika , A. Kaldybekova , S. Fedorchenko , Y. Solovyeva , E. Dedov , A. Sarkisyan , A. Vinokurov , O. Sholukhova

Luminous blue variable stars (LBVs) are of great interest in massive-star evolution as they experience very high mass-loss episodes within short periods of time. HR Car is a famous member of this class in the Galaxy. It has a large…

Solar and Stellar Astrophysics · Physics 2021-09-29 A. Mehner , S. Janssens , C. Agliozzo , W. -J. de Wit , H. M. J. Boffin , D. Baade , J. Bodensteiner , J. H. Groh , L. Mahy , F. P. A. Vogt

We report on the results of a survey for radial velocity variability in a heterogeneous sample of very low-mass stars and brown dwarfs. One distinguishing characteristic of the survey is its timespan, which allows an overlap between…

Astrophysics · Physics 2008-11-26 Gibor Basri , Ansgar Reiners

Only about 19 Galactic and 25 extra-galactic bona-fide Luminous Blue Variables (LBVs) are known to date. This incomplete census prevents our understanding of this crucial phase of massive star evolution which leads to the formation of heavy…

A debate has arisen concerning the fundamental nature of LBVs) and their role in stellar evolution. While Smith and Tombleson proposed that their isolated environments indicate that LBVs must be largely the product of binary evolution,…

Solar and Stellar Astrophysics · Physics 2016-08-03 Nathan Smith

Context. Long-period Wolf-Rayet (WR) star binaries produced by mass transfer are predicted to be abundant, but are observationally rare. This yields constraints on the evolution of initially wide O star binaries, including those potentially…

Long secondary periods (LSPs) occur in about one-third of evolved stars, yet their origin remains unclear. The leading explanations are oscillatory convective modes and a binary companion embedded in dust. We investigate the LSP of the red…

Solar and Stellar Astrophysics · Physics 2026-01-21 B. Courtney-Barrer , X. Haubois , P. Wood , D. Dionese , L. Decin , C. Paladini , I. El Mellah , D. Defrère , M. Ireland

Luminous Blue Variables are massive evolved stars, here we introduce this outstanding class of objects. Described are the specific characteristics, the evolutionary state and what they are connected to other phases and types of massive…

Solar and Stellar Astrophysics · Physics 2020-09-08 Kerstin Weis , Dominik J. Bomans

The luminous blue variable (LBV) stars are peculiar very massive stars. The study of these stellar objects and their surroundings is important for understanding the evolution of massive stars and its effects on the interstellar medium. We…

Astrophysics of Galaxies · Physics 2015-06-05 S. Paron , J. A. Combi , A. Petriella , E. Giacani

This study presents an investigation of nearly two dozen candidate Luminous Blue Variables (cLBVs) in the galaxies M31 and M33. Eight stars have been studied in detail, while an additional sixteen objects are briefly mentioned. Multi-epoch…

Solar and Stellar Astrophysics · Physics 2026-03-12 Sai Li , Cheng Liu , Jincheng Guo

WR 31a (Hen 3-519) is likely a post-luminous blue variable (LBV) star that is evolving to become a classical Wolf-Rayet star. Multicolor (UBVR) photopolarimetric observations of WR 31a were obtained over nine nights in early 2007. The…

Solar and Stellar Astrophysics · Physics 2025-05-02 Christiana Erba , Richard Ignace , Faith Simmons , Ben Davies

Long secondary period (LSP) variable stars are a subclass of long-period variables (LPV) that exhibit additional long-term variability alongside pulsations. Despite being observed in over 30% of LPVs, the reason behind the LSP phenomenon is…

Solar and Stellar Astrophysics · Physics 2025-12-19 P. Iwanek , D. M. Skowron , G. Pojmański , I. Soszyński
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