The IACOB project: XVI. Surface helium abundances in Galactic O-type stars: indications for identifying binary interaction products
S. Sim\'on-D\'iaz, G. Holgado, C. Mart\'inez-Sebasti\'an, M. Carretero-Castrillo, H. Jin, M. A. Urbaneja, R. Gamen, J. Puls, A. de Burgos, M. Garcia, A. Herrero, Z. Keszthelyi, N. Langer, F. Najarro, J. M. Paredes, M. Rib\'o

TL;DR
This study analyzes surface helium abundances in 318 Galactic O-type stars, revealing that about 22% show enrichment likely due to binary interactions, challenging the assumption that internal mixing is the sole cause.
Contribution
It provides the largest homogeneous dataset of helium abundances in Galactic O-type stars and links He enrichment to binary evolution effects.
Findings
78% of stars have normal helium levels consistent with cosmic standards.
22% of stars show significant helium enrichment.
Most He-enriched stars are likely products of binary interactions.
Abstract
The presence of massive O-type stars with surfaces enriched by CNO-cycle products has been known since the early 1980s. For many years, internal rotational mixing was assumed to be the dominant mechanism responsible for this chemical contamination. However, accumulating evidence now suggests that binary interaction -- particularly mass-transfer episodes -- may play an equally important, if not dominant, role. We aim to carry out a large-scale investigation of surface helium (He) abundances in Galactic O-type stars, based on the results from the analysis of high-quality spectroscopic data from the IACOB project. We perform a homogeneous spectroscopic analysis of 318 Galactic O-type stars with the IACOB-BROAD and FASTWIND/IACOB-GBAT tools, deriving rotational velocities, atmospheric parameters, and He abundances. We also account for the influence of binarity, runaway status, and parameter…
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