论文标题

ARCHI:Cheops背景星的光曲线提取管道

ARCHI: pipeline for light curve extraction of CHEOPS background star

论文作者

Silva, André M., Sousa, Sérgio G., Santos, Nuno, Demangeon, Olivier D. S., Silva, Pedro, Hoyer, S., Guterman, P., Deleuil, Magali, Ehrenreich, David

论文摘要

空间的高精度时间序列光度法用于许多科学案例。在这种情况下,最近推出的Cheops(ESA)任务有望在6个小时的曝光时间内带来20 ppm的精度,当时将附近的明亮恒星瞄准,请记住通过过境测量的详细表征外球星系的详细表征。但是,官方的Cheops(ESA)任务管道仅为主要目标(田间的中央恒星)提供光度法。为了探索Cheops光度法对于该领域的所有恒星的潜力,在本文中,我们提出了Archi,这是一个额外的开源管道模块†,以分析图像中存在的背景恒星。由于Archi使用官方数据减少管道数据作为输入,因此它并不是用作处理RAW CHEOPS数据的独立工具,而是用作官方管道的附加组件。我们使用Cheops模拟图像测试Archi,并证明Cheops图像中背景恒星的光度法仅略有降级(倍于2至3倍)。这打开了使用Cheops立即产生几个近距离目标的光度法时间序列的潜力,并使用图像中使用不同的恒星来校准系统误差。我们还展示了一个明确的科学应用,其中对伴侣光曲线的研究对于理解主要目标的污染可能很重要。

High precision time series photometry from space is being used for a number of scientific cases. In this context, the recently launched CHEOPS (ESA) mission promises to bring 20 ppm precision over an exposure time of 6 hours, when targeting nearby bright stars, having in mind the detailed characterization of exoplanetary systems through transit measurements. However, the official CHEOPS (ESA) mission pipeline only provides photometry for the main target (the central star in the field). In order to explore the potential of CHEOPS photometry for all stars in the field, in this paper we present archi, an additional open-source pipeline module†to analyse the background stars present in the image. As archi uses the official Data Reduction Pipeline data as input, it is not meant to be used as independent tool to process raw CHEOPS data but, instead, to be used as an add-on to the official pipeline. We test archi using CHEOPS simulated images, and show that photometry of background stars in CHEOPS images is only slightly degraded (by a factor of 2 to 3) with respect to the main target. This opens a potential for the use of CHEOPS to produce photometric time series of several close-by targets at once, as well as to use different stars in the image to calibrate systematic errors. We also show one clear scientific application where the study of the companion light curve can be important for the understanding of the contamination on the main target.

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