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Plaskett’s star: analysis of the CoRoT photometric data

机译:Plaskett的明星:对CoRoT光度数据的分析

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Context. The second short run (SRa02) of the CoRoT space mission for asteroseismology was partly devoted to stars belonging to the Mon?OB2 association. An intense monitoring has been performed on Plaskett’s star (HD?47129) and the unprecedented quality of the light curve allows us to shed new light on this very massive, non-eclipsing binary system. Aims. We particularly aimed at detecting periodic variability that might be associated with pulsations or interactions between both components. We also searched for variations related to the orbital cycle that could help to constrain the inclination and the morphology of the binary system. Methods. We applied an iterative Fourier-based prewhitening and a multiperiodic fitting procedure to analyse the time series and extract the frequencies of variations from the CoRoT light curve. We describe the noise properties to tentatively define an appropriate significance criterion and, in consequence, to only point out the peaks at a certain significance level. We also detect the variations related to the orbital motion and study them with the NIGHTFALL programme. Results. The periodogram computed from Plaskett’s star CoRoT light curve mainly exhibits a majority of peaks at low frequencies. Among these peaks, we highlight a list of 43?values, notably including two different sets of harmonic frequencies whose fundamental peaks are located at about 0.07 and 0.82?d-1. The former represents the orbital frequency of the binary system, whilst the latter could probably be associated with non-radial pulsations. The study of the 0.07?d-1 variations reveals a hot spot most probably situated on the primary star and facing the secondary. Conclusions. The investigation of this unique dataset constitutes a further step in the understanding of Plaskett’s star. These results provide a first basis for future seismic modelling and put forward the probable existence of non-radial pulsations in Plaskett’s star. Moreover, the fit of the orbital variations confirms the problem of the distance of this system which was already mentioned in previous works. A hot region between both components renders the determination of the inclination ambiguous.
机译:上下文。 CoRoT航天地震学太空任务的第二次短期任务(SRa02)部分致力于属于Mon?OB2协会的恒星。已经对Plaskett的恒星(HD?47129)进行了严格的监视,并且空前的光曲线质量使我们能够在这个非常庞大的无遮挡双星系统上崭露头角。目的我们特别旨在检测可能与两个组件之间的脉动或相互作用相关的周期性变化。我们还搜索了与轨道周期有关的变化,这些变化可能有助于限制二进制系统的倾斜度和形态。方法。我们应用了基于迭代傅立叶的预白化和多周期拟合程序来分析时间序列,并从CoRoT光曲线中提取变化的频率。我们描述噪声特性以临时定义适当的显着性标准,并因此仅指出处于特定显着性水平的峰。我们还检测与轨道运动有关的变化,并通过NIGHTFALL程序进行研究。结果。根据普拉斯基特(Plaskett)的CoRoT星光曲线计算出的周期图主要显示出低频处的大部分峰。在这些峰值中,我们突出显示了43个值的列表,特别是包括两组不同的谐波频率,其基本峰值位于大约0.07和0.82?d-1。前者代表双星系统的轨道频率,而后者可能与非径向脉动有关。对0.07?d-1变化的研究揭示了一个热点,该热点最有可能位于原恒星上并面向副恒星。结论。对这一独特数据集的研究构成了对普拉斯基特之星的进一步了解。这些结果为未来的地震建模提供了基础,并提出了普拉斯基特星中非径向脉动的可能存在。此外,轨道变化的拟合证实了该系统的距离问题,这在先前的工作中已经提到。两个组件之间的高温区域使确定倾斜度变得模棱两可。

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