论文标题
小行星相曲线使用稀疏的Gaia DR2数据和差分密度光曲线
Asteroid phase curves using sparse Gaia DR2 data and differential dense light curves
论文作者
论文摘要
空间和地面调查收集的稀疏小行星光度法量正在成倍增长。由于要处理的大量信息以及组合来自不同来源的数据所需的新方法(例如,通过不同的技术,不同的频段中获得的数据,以及具有不同的随机和系统错误),这一数据构成了计算挑战。这项工作的主要目的是开发一种能够融合相对和差异数据集的算法,以准备小行星观测,源自例如Gaia,Tess,Atlas,Atlas,LSST,LSST,K2,Vista,Vista和许多其他来源。我们提出了一种新的方法来通过结合稀疏光度法和差异地面光度法来获得小行星相曲线。在传统方法中,后者不能用于相曲线。合并这两种数据类型可以为越来越多的对象提取相曲线信息。我们的方法已通过盖亚任务观察到的26种样本小行星进行了验证。
The amount of sparse asteroid photometry being gathered by both space- and ground-based surveys is growing exponentially. This large volume of data poses a computational challenge owing to both the large amount of information to be processed and the new methods needed to combine data from different sources (e.g. obtained by different techniques, in different bands, and having different random and systematic errors). The main goal of this work is to develop an algorithm capable of merging sparse and dense data sets, both relative and differential, in preparation for asteroid observations originating from, for example, Gaia, TESS, ATLAS, LSST, K2, VISTA, and many other sources. We present a novel method to obtain asteroid phase curves by combining sparse photometry and differential ground-based photometry. In the traditional approach, the latter cannot be used for phase curves. Merging those two data types allows for the extraction of phase-curve information for a growing number of objects. Our method is validated for 26 sample asteroids observed by the Gaia mission.