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首页> 外文期刊>Astronomy and astrophysics >Studying bright variable stars with the Multi-site All-Sky CAmeRA (MASCARA) ?
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Studying bright variable stars with the Multi-site All-Sky CAmeRA (MASCARA) ?

机译:使用多站点全天CAmeRA(MASCARA)研究亮变星[xref ref-type =“ fn” rid =“ FN1”>?

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Context . The Multi-site All-Sky CAmeRA (MASCARA) aims to find the brightest transiting planet systems by monitoring the full sky at magnitudes 4 < V < 8.4, taking data every 6.4 s. The northern station has been operational on La Palma since February 2015. These data can also be used for other scientific purposes, such as the study of variable stars. Aims . In this paper we aim to assess the value of MASCARA data for studying variable stars by determining to what extent known variable stars can be recovered and characterised, and how well new, unknown variables can be discovered. Methods . We used the first 14 months of MASCARA data, consisting of the light curves of 53 401 stars with up to one million flux points per object. All stars were cross-matched with the VSX catalogue to identify known variables. The MASCARA light curves were searched for periodic flux variability using generalised Lomb–Scargle periodograms. If significant variability of a known variable was detected, the found period and amplitude were compared with those listed in the VSX database. If no previous record of variability was found, the data were phase folded to attempt a classification. Results . Of the 1919 known variable stars in the MASCARA sample with periods 0.1 < P < 10 days, amplitudes >2%, and that have more than 80 h of data, 93.5% are recovered. In addition, the periods of 210 stars without a previous VSX record were determined, and 282 candidate variable stars were newly identified. We also investigated whether second order variability effects could be identified. The O’Connell effect is seen in seven eclipsing binaries, of which two have no previous record of this effect. Conclusions . MASCARA data are very well suited to study known variable stars. They also serve as a powerful means to find new variables among the brightest stars in the sky. Follow-up is required to ensure that the observed variability does not originate from faint background objects.
机译:语境。多站点全天候CAmeRA(MASCARA)旨在通过监视4 2%,并且有80多个小时的数据,其中93.5%被回收。此外,确定了210颗没有先前VSX记录的恒星,并重新识别了282颗候选变星。我们还调查了是否可以确定二阶变异性影响。 O'Connell效应出现在七个日蚀二进制文件中,其中两个没有以前的记录。结论。 MASCARA数据非常适合研究已知的变星。它们也是在天空中最亮的恒星中寻找新变量的有力手段。需要进行后续操作,以确保观察到的变异性不是由模糊的背景物体引起的。

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