首页> 外文期刊>Astronomy and astrophysics >Multi-object spectroscopy of stars in the CoRoT fields - I. Early-type stars in the CoRoT-fields IRa01, LRa01, LRa02
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Multi-object spectroscopy of stars in the CoRoT fields - I. Early-type stars in the CoRoT-fields IRa01, LRa01, LRa02

机译:CoRoT场中恒星的多目标光谱-I. CoRoT场中的早期类型恒星IRa01,LRa01,LRa02

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Context. Observations of giant stars indicate that the frequency of giant planets is much higher for intermediate-mass stars than for solar-like stars. Up to now all known planets of giant stars orbit at relatively far distances from their host stars. It is not known whether intermediate-mass stars also had many close-in planets when they were on the main sequence, which were then engulfed when the star became a giant star. To understand the formation and evolution of planets it is therefore important to find out whether main-sequence stars of intermediate-mass have close-in planets or not. Aims. A survey for transiting planets of intermediate-mass stars would be ideal to solve this question, because the detection of transiting planets is not affected by the rapid rotation of these stars. With CoRoT it is possible to detect transiting planets around stars up to a spectral type B4V. As a first step for an efficient survey we need to identify intermediate-mass stars in the CoRoT-fields, which can then be used as an input list. Methods. To compile the input list we derived the spectral types of essentially all O, B and A?stars down to 14.5 mag in the CoRoT fields IRa01, LRa01, LRa02 taken with the multi-object spectrograph AAOmega. We determined the spectral types by comparing the spectra with template spectra from a library. Results. In total we identify 1856 A and B stars that have been observed with CoRoT. Using multiple spectra of these stars, we find that the accuracy of the resulting spectral classification is 1.61?±?0.14 sub-classes for A and B stars. Conclusions. Given the number of planets that have been detected in these fields amongst late-type stars, we estimate that there are one to four transiting planets of intermediate-mass stars waiting to be discovered. Our survey not only allows us to carry out a dedicated planet search programme but is also essential for any types of studies of the light curves of early-type stars in the CoRoT database. We also show that it would be possible to extend the survey to all fields that CoRoT has observed using photometrically determined spectral types.
机译:上下文。对巨型恒星的观测表明,中等质量恒星的巨型行星的频率比类似太阳的恒星的频率高得多。到目前为止,所有已知的巨星行星都以离其恒星相对较远的距离运行。尚不清楚中间质量恒星在主序上时是否也有许多近距离行星,然后当恒星变成巨型恒星时被吞噬。因此,要了解行星的形成和演化,重要的是找出中等质量主序恒星是否具有近距离行星。目的对中间质量恒星的过渡行星进行调查将是解决此问题的理想选择,因为对过渡行星的探测不受这些恒星快速旋转的影响。借助CoRoT,可以检测到光谱类型B4V以下的恒星周围的过渡行星。作为高效调查的第一步,我们需要在CoRoT字段中识别中等质量的恒星,然后将其用作输入列表。方法。为了编制输入清单,我们推导了多目标光谱仪AAOmega拍摄的CoRoT磁场IRa01,LRa01,LRa02中基本上所有O,B和A星的光谱类型,直至14.5 mag。我们通过将光谱与库中的模板光谱进行比较来确定光谱类型。结果。我们总共确定了CoRoT观测到的1856个A和B星。使用这些恒星的多个光谱,我们发现所得光谱分类的准确度是A和B恒星的子类别为1.61?±?0.14。结论。鉴于在这些领域中已发现的晚型恒星中的行星数量,我们估计有1-4个正在过渡的中等质量恒星正在等待被发现。我们的调查不仅使我们能够执行专门的行星搜索程序,而且对于CoRoT数据库中对早期类型恒星的光曲线的任何类型的研究都是必不可少的。我们还表明,可以使用光度确定的光谱类型将调查范围扩展到CoRoT观测到的所有领域。

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