Investigating 39 Galactic Wolf-Rayet stars with VLTI/GRAVITY: Uncovering A Long Period Binary Desert
K. Deshmukh, H. Sana, A. M\'erand, E. Bordier, N. Langer, J., Bodensteiner, K. Dsilva, A. J. Frost, E. Gosset, J. -B. Le Bouquin, R. R., Lefever, L. Mahy, L. R. Patrick, M. Reggiani, A. A. C. Sander, T. Shenar, F., Tramper, J. I. Villase\~nor, I. Waisberg

TL;DR
This study used VLTI/GRAVITY infrared interferometry to survey 39 Galactic Wolf-Rayet stars, revealing a scarcity of long-period binary systems and providing new insights into their multiplicity and evolutionary interactions.
Contribution
It is the first comprehensive interferometric survey of long-period WR binaries, challenging existing models predicting many such systems.
Findings
Detected wide companions in 4 stars.
Observed multiplicity fractions: WN 55%, WC 40%, WNh 23%.
Found a lack of intermediate and long-period WR binaries.
Abstract
Wolf-Rayet stars (WRs) are one of the final evolutionary stages of massive stars and immediate progenitors of stellar-mass black holes. Their multiplicity forms an important anchor point in single and binary population models for predicting gravitational-wave progenitors. Recent spectroscopic campaigns have suggested incompatible multiplicity fractions and period distributions for N- and C-rich Galactic WRs (WNs and WCs) at short as well as long orbital periods, in contradiction with evolutionary model predictions. In this work, we employed infrared interferometry using the -band instrument GRAVITY at the VLTI to investigate the multiplicity of WRs at long periods and explore the nature of their companions. We present a survey of 39 Galactic WRs, including 11 WN, 15 WC and 13 H-rich WN (WNh) stars. We detected wide companions with GRAVITY for only four stars: WR 48, WR 89, WR 93 and…
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