most citedA high fraction of close massive binary stars at low metallicity

22 citations · 31 across the 5 of their papers we have counts for

collaborators

5 papers

astro-ph.SR202522 cited

A high fraction of close massive binary stars at low metallicity

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

At high metallicity, a majority of massive stars have at least one close stellar companion. The evolution of such binaries is subject to strong interaction processes, heavily impac…

astro-ph.SR20259 cited

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

New empirical mass-loss recipe for UV radiation line-driven winds of hot stars across various metallicities

D. Pauli, L. M. Oskinova, W. -R. Hamann +7

The winds of massive stars remove a significant fraction of their mass, strongly impacting their evolution. As a star evolves, the rate at which it loses mass changes. In stellar e…

physics.pop-ph2025

Resolving the baryon assymmetry with RATS

J. Josiek, M. Bernini-Peron, G. González-Torà +2

Current leading theories of physics such as the Big Bang, the standard model of particle physics, and general relativity suggest that the universe should contain an equal amount of…

astro-ph.SR2024

X-Shooting ULLYSES: Massive stars at low metallicity VII. Stellar and wind properties of B supergiants in the Small Magellanic Cloud

M. Bernini-Peron, A. A. C. Sander, V. Ramachandran +22

Context. B supergiants (BSGs) represent an important connection between the main sequence and more extreme evolutionary stages of massive stars. Additionally, lying toward the cool…