most citedUltraviolet spectroscopy reveals a hot and luminous companion to the Be star+black hole candidate MWC 656

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astro-ph.SR20261 cited

Ultraviolet spectroscopy reveals a hot and luminous companion to the Be star+black hole candidate MWC 656

Johanna Müller-Horn, Varsha Ramachandran, Kareem El-Badry +11

The Galactic Be star binary MWC 656 was long considered the only known Be star+black hole (BH) system, making it a critical benchmark for models of massive binary evolution and for…

astro-ph.SR20262 cited

Dynamically consistent analysis of Galactic WN4b stars

Roel R. Lefever, Andreas A. C. Sander, Matheus Bernini-Peron +6

Many Wolf-Rayet (WR) stars have optically thick winds that cloak the hydrostatic layers of the underlying star. In these cases, traditional spectral analysis methods are plagued by…

astro-ph.SR2025

Binarity at LOw Metallicity (BLOeM): a spectroscopic VLT monitoring survey of massive stars in the SMC

T. Shenar, J. Bodensteiner, H. Sana +74

Surveys in the Milky Way and Large Magellanic Cloud revealed that the majority of massive stars will interact with companions during their lives. However, knowledge of the binary p…

astro-ph.SR2025

Near-Eddington mass loss of hydrogen-rich Wolf-Rayet stars

Roel R. Lefever, Andreas A. C. Sander, Matheus Bernini-Peron +6

Context. Very massive clusters and regions of intense star formation such as the center of our Milky Way contain young, hydrogen-burning stars very close to the Eddington Limit. Fo…

astro-ph.SR2025

Exploring the connection between atmosphere models and evolution models of very massive stars

Joris Josiek, Andreas A. C. Sander, Matheus Bernini-Peron +6

Very massive stars (VMS) dominate the light of young stellar populations and are sources of intense stellar feedback. Their evolution is mainly driven by strong wind mass loss, yet…

astro-ph.SR2025

Coupling hydrodynamics with comoving frame radiative transfer. III. The wind regime of early-type B hypergiants

M. Bernini-Peron, A. A. C. Sander, F. Najarro +8

Context. B hypergiants (BHGs) are important for understanding high-mass stellar evolution. While they are in a similar parameter space of B supergiants (BSGs), some BHGs are known…