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CoRoT light curves of RR Lyrae stars CoRoT 101128793: long-term changes in the Blazhko effect and excitation of additional modes

机译:RR天琴星的CoRoT光曲线CoRoT 101128793:Blazhko效应的长期变化和其他模式的激发

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摘要

Context. The CoRoT (Convection, Rotation and planetary Transits) space mission provides a valuable opportunity to monitor stars with uninterrupted time sampling for up to 150 days at a time. The study of RR Lyrae stars, performed in the framework of the Additional Programmes belonging to the exoplanetary field, will particularly benefit from such dense, long-duration monitoring.Aims: The Blazhko effect in RR Lyrae stars is a long-standing, unsolved problem of stellar astrophysics. We used the CoRoT data of the new RR Lyrae variable CoRoT 101128793 (f0 = 2.119 d-1, P = 0.4719296 d) to provide us with more detailed observational facts to understand the physical process behind the phenomenon.Methods: The CoRoT data were corrected for one jump and the long-term drift. We applied different period-finding techniques to the corrected timeseries to investigate amplitude and phase modulation. We detected 79 frequencies in the light curve of CoRoT 101128793. They have been identified as the main frequency f0 and its harmonics, two independent terms, the terms related to the Blazhko frequency fm, and to several combination terms.Results: A Blazhko frequency fm = 0.056 d-1 and a triplet structure around the fundamental radial mode and harmonics were detected, as were a long-term variability on the Blazhko modulation. Indeed, the amplitude of the main oscillation is decreasing along the CoRoT survey. The Blazhko modulation is one of the smallest observed in RR Lyrae stars. Moreover, the additional modes f1 = 3.630 and f2 = 3.159 d-1 are detected. Taking its ratio with the fundamental radial mode into account, the term f1 could be the identified as the second radial overtone. Detecting of these modes in horizontal branch stars is a new result obtained by CoRoT.The CoRoT space mission was developed and is operated by the French space agency CNES, with participation of ESA's RSSD and Science Programmes, Austria, Belgium, Brazil, Germany, and Spain.The CoRoT timeseries, table of the photometry, Tables 1 and 2 are only available in electronic form at the CDS via anonymous ftp to cdsarc.u-strasbg.fr (130.79.128.5) or via http://cdsarc.u-strasbg.fr/viz-bin/qcat?J/A+A/520/A108
机译:上下文。 CoRoT(对流,自转和行星运输)太空任务提供了宝贵的机会,可以连续进行多达150天的时间采样来监视恒星。在属于系外行星场的附加计划的框架内进行的RR天琴星研究将特别受益于这种密集的长期监测。目的:RR天琴星的Blazhko效应是一个长期未解决的问题。天体物理学。我们使用新的RR Lyrae变量CoRoT 101128793(f0 = 2.119 d-1,P = 0.4719296 d)的CoRoT数据为我们提供了更详细的观测事实,以了解现象背后的物理过程。方法:纠正了CoRoT数据一跳和长期漂移。我们将不同的周期查找技术应用于校正后的时间序列,以研究幅度和相位调制。我们在CoRoT 101128793的光曲线中检测到79个频率。它们被确定为主频率f0及其谐波,这是两个独立的术语,即与布拉兹科频率fm相关的术语以及几个组合项。结果:布拉兹科频率fm = 0.056 d-1,检测到基本径向模态和谐波周围的三重态结构,以及Blazhko调制的长期可变性。实际上,沿着CoRoT测量,主振荡的幅度正在减小。 Blazhko调制是在RR天琴星中观测到的最小调制之一。此外,检测到附加模式f1 = 3.630和f2 = 3.159 d-1。考虑到其与基本径向模式的比率,可以将项f1识别为第二径向泛音。 CoRoT获得了一项新的结果,即在水平分支星中探测这些模式.CoRoT太空任务是由法国航天局CNES研发并运行的,由ESA的RSSD和科学计划,奥地利,比利时,巴西,德国和西班牙CoRoT时间序列,测光表,表1和表2仅可通过匿名ftp到cdsarc.u-strasbg.fr(130.79.128.5)或通过http://cdsarc.u-通过CDS以电子形式获得。 strasbg.fr/viz-bin/qcat?J/A+A/520/A108

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