论文标题
南极望远镜的观察计划和自动数据减少,ASTEP+
Observation Scheduling and Automatic Data Reduction for the Antarctic telescope, ASTEP+
论文作者
论文摘要
在南极洲观察到来自圆顶C的过境外行星的可能性可带来巨大的好处:稳定的天气条件,有限的大气湍流以及由于澳大利亚冬季而持续将近三个月的夜晚。但是,该网站还提出了重大限制,例如维护访问量的有限和仅几个kb/s的互联网速度。后一个因素意味着,每年收集的大约6 TB数据必须自动处理,仅每天将最终数据产品发送到欧洲。在这种情况下,我们介绍了ASTEP+的当前操作状态,ASTEP+是位于南极洲Concordia站的40 cm光学望远镜。在成功的夏季运动之后,Astep+开始了2022年的观测季节,其崭新的两色光度计具有提高的敏感性。在Concordia的专用服务器上安装的新的Python数据分析管道将显着提高提取的光度法的精度,从而使我们能够获得更高的信噪比通道检测。新管道还结合了自动运输建模,以减少所需的手动后处理量。它还处理光度光曲面的自动传输和控制数据到欧洲。此外,我们介绍了用于选择和调度过境观测值的Python和基于Web的系统;这些系统在安排其他天文学观察方面具有广泛的适用性,并具有很强的时间限制。我们还回顾了ASTEP+将进行和分析astep+在外部运输研究中的独特程度的科学类型。
The possibility to observe transiting exoplanets from Dome C in Antarctica provides immense benefits: stable weather conditions, limited atmospheric turbulence, and a night that lasts almost three months due to the austral winter. However, this site also presents significant limitations, such as limited access for maintenance and internet speeds of only a few KB/s. This latter factor means that the approximately 6 TB of data collected annually must be processed on site automatically, with only final data products being sent once a day to Europe. In this context, we present the current state of operations of ASTEP+, a 40 cm optical telescope located at Concordia Station in Antarctica. Following a successful summer campaign, ASTEP+ has begun the 2022 observing season with a brand-new two-colour photometer with increased sensitivity. A new Python data analysis pipeline installed on a dedicated server in Concordia will significantly improve the precision of the extracted photometry, enabling us to get higher signal-to-noise transit detections. The new pipeline additionally incorporates automatic transit modelling to reduce the amount of manual post-processing required. It also handles the automatic daily transfer of the photometric lightcurves and control data to Europe. Additionally, we present the Python and web-based systems used for selection and scheduling of transit observations; these systems have wide applicability for the scheduling of other astronomical observations with strong time constraints. We also review the type of science that ASTEP+ will be conducting and analyse how unique ASTEP+ is to exoplanet transit research.