CoRoT high-precision photometry of the B0.5 IV star HD 51756
P. I. P\'apics, M. Briquet, M. Auvergne, C. Aerts, P. Degroote, E., Niemczura, M. Vu\v{c}kovi\'c, K. Smolders, E. Poretti, M. Rainer, M. Hareter,, A. Baglin, F. Baudin, C. Catala, E. Michel, R. Samadi

TL;DR
This study analyzes the CoRoT light curve of the B0.5 IV star HD 51756, combining space-based photometry with ground-based spectroscopy to investigate its stellar parameters, binary nature, and pulsational properties, revealing rotational modulation without detected pulsations.
Contribution
It provides the first detailed analysis of HD 51756's pulsational behavior and binary characteristics, integrating high-resolution spectroscopy with space photometry to refine stellar models.
Findings
HD 51756 is a wide binary with two early-B stars of different rotation speeds.
No pulsations were detected in either component, contrary to theoretical predictions.
The observed harmonic structure is attributed to rotational modulation.
Abstract
OB stars are important constituents for the ecology of the Universe, and there are only a few studies on their pulsational properties detailed enough to provide important feedback on current evolutionary models. Our goal is to analyse and interpret the behaviour present in the CoRoT light curve of the B0.5 IV star HD 51756 observed during the second long run of the space mission, and to determine the fundamental stellar parameters from ground-based spectroscopy gathered with the CORALIE and HARPS instruments after checking for signs of variability and binarity, thus making a step further in mapping the top of the Beta Cep instability strip. We compare the newly obtained high-resolution spectra with synthetic spectra of late O-type and early B-type stars computed on a grid of stellar parameters. We match the results with evolutionary tracks to estimate stellar parameters. We use various…
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