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首页> 外文期刊>Astronomy and astrophysics >Periodicity search as a tool for disentangling the contaminated colour light curve of CoRoT 102781750
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Periodicity search as a tool for disentangling the contaminated colour light curve of CoRoT 102781750

机译:周期性搜索作为解开CoRoT 102781750的受污染色光曲线的工具

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Context. The CoRoT space mission (COnvection, ROtation and planetary Transits) launched in December 2006, aims at finding transiting exoplanets and investigating stellar oscillation in adjacent stellar fields, called exo- and seismofields, respectively. Besides the seismofields, CoRoT has a strong potential for seismological research on the exofields. Up to now, only a limited number of RR?Lyrae stars have been classified among the CoRoT targets. Knowing the astrophysical importance of the RR?Lyrae stars, we attempted to get useful information even from a contaminated light curve of a possible RR?Lyrae pulsator. Aims. The star CoRoT?102781750 reveals a puzzle, showing a very complex and altering variation in different “CoRoT colours”. We established without doubt that more than a single star was situated within the CoRoT mask. Using a search for periodicity as a tool, our aim is to disentangle the composite light curve and identify the type of sources behind the variability. Methods. Both flux and magnitude light curves were used. Conversion was applied after a jump- and trend-filtering algorithm. We applied different types of period-finding techniques including MuFrAn and Period04. Results. The amplitude and phase peculiarities obtained from the independent analysis of CoRoT r, g, and b colours and ground-based follow-up photometric observations ruled out the possibility of either a background monoperiodic or a Blazhko type RR?Lyrae star being in the mask. The main target, an active star, shows at least two spotted areas that reveal a Prot?=?8.8?h (f0?=?2.735?c?d-1) mean rotation period. The evolution of the active regions helped to derive a period change of dP/dt?=?1.6????×????10-6 (18?s over the run) and a differential rotation of α?=?ΔΩ/Ω?=?0.0074. The 0?015 linear decrease and a local 0?005 increase in the dominant period’s amplitude are interpreted as a decay of the old spotted region and an appearance of a new one, respectively. A star that is detected only in the CoRoT b domain shows a f1?=?7.172?c?d-1 pulsation connected to a 14?83 periodicity via an equidistant triplet structure. The best explanation for our observation is a β Cep star with a corotating dust disk.
机译:上下文。 CoRoT太空任务(对流,旋转和行星运输)于2006年12月启动,其目的是寻找正在飞越的系外行星,并研究相邻星系场(分别称为系外磁场和地震场)的恒星振荡。除地震场外,CoRoT还具有在外场进行地震学研究的强大潜力。到目前为止,只有有限数量的RR?Lyrae星已被划分为CoRoT目标。知道RR?Lyrae恒星的天体物理重要性,我们甚至试图从可能的RR?Lyrae脉动器的污染光曲线中获得有用的信息。目的星号CoRoT?102781750揭示了一个难题,它显示了不同“ CoRoT颜色”中非常复杂且变化多端的变化。毫无疑问,我们确定CoRoT遮罩内不止有一颗恒星。使用搜索周期性作为工具,我们的目的是解开复合光曲线并确定变异性背后的光源类型。方法。通量和强度光曲线都被使用。跳转和趋势过滤算法后应用了转换。我们应用了不同类型的周期发现技术,包括MuFrAn和Period04。结果。通过对CoRoT r,g和b颜色的独立分析以及基于地面的后续光度学观测获得的振幅和相位特性排除了背景单周期或Blazhko型RR?Lyrae星在掩模中的可能性。主要目标是一颗活​​跃的恒星,它至少显示出两个斑点区域,它们的平均自转周期为Prot?=?8.8?h(f0?=?2.735?c?d-1)。有源区的演变有助于得出dP / dt?=?1.6 ????×?????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????? 6-6(即运行18?s)和差旋转角α?=?ΔΩ /Ω≥0.0074。主周期振幅的0?015线性减小和局部0?005增大分别解释为旧斑点区域的衰减和新斑点区域的出现。仅在CoRoT b域中检测到的恒星显示出f1α=?7.172?c?d-1脉动,它通过等距三重态结构连接到14?83的周期性。我们观察到的最好的解释是一个带有正转的尘埃盘的βCep星。

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