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Variability in the CoRoT photometry of three hot O-type stars. HD 46223, HD 46150 and HD 46966

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arxiv 1107.0267 v1 pith:RF2SD2AD submitted 2011-07-01 astro-ph.SR astro-ph.GA

classification astro-ph.SRastro-ph.GA
keywords frequenciesstarso-typedatanoisetheoreticalcorotspectrum
verification ladder T0 review T1 audit T2 compute T3 formal
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The detection of pulsational frequencies in stellar photometry is required as input for asteroseismological modelling. The second short run (SRa02) of the CoRoT mission has provided photometric data of unprecedented quality and time-coverage for a number of O-type stars. We analyse the CoRoT data corresponding to three hot O-type stars, describing the properties of their light curves and we search for pulsational frequencies, which we then compare to theoretical model predictions. We determine the amplitude spectrum of the data, using the Lomb-Scargle and a multifrequency HMM-like technique. Frequencies are extracted by prewhitening, and their significance is evaluated under the assumption that the light curve is dominated by red noise. We search for harmonics, linear combinations and regular spacings among these frequencies. We use simulations with the same time sampling as the data as a powerful tool to judge the significance of our results. From the theoretical point of view, we use the MAD non-adiabatic pulsation code to determine the expected frequencies of excited modes. A substantial number of frequencies is listed, but none can be convincingly identified as being connected to pulsations. The amplitude spectrum is dominated by red noise. Theoretical modelling shows that all three O-type stars can have excited modes but the relation between the theoretical frequencies and the observed spectrum is not obvious. The dominant red noise component in the hot O-type stars studied here clearly points to a different origin than the pulsations seen in cooler O stars. The physical cause of this red noise is unclear, but we speculate on the possibility of sub-surface convection, granulation, or stellar wind inhomogeneities being responsible.

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Cited by 3 Pith papers

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  1. The symphony of pulsations and binarity among massive stars using HERMES spectroscopy and TESS photometry

    astro-ph.SR 2026-08 conditional novelty 6.0 of 10

    An ensemble analysis of 873 O/B stars shows photometric variability in >93%, pulsations in ~82%, and evidence of binarity in at least 14%, including 30 newly discovered eclipsing binaries.

  2. Characterization of the variability of the blue supergiant HD 14134

    astro-ph.SR 2026-08 conditional novelty 5.0 of 10

    HD 14134 is a post-main-sequence blue supergiant with a 19.2-day g-mode pulsation and wind variability that may dominate its TESS brightness changes, questioning its alpha Cyg variable classification.

  3. Origin of the Long-Period Radial Velocity Variation in the Red Supergiant HD 216946 (V424 Lac)

    astro-ph.SR 2026-07 conditional novelty 5.0 of 10

    The 1365-day radial-velocity period of HD 216946 is probably caused by chromospheric activity and extended-atmosphere dynamics, not by a Keplerian companion.

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