首页> 外文期刊>The Astrophysical journal >Sloan Digital Sky Survey Standard Star Catalog for Stripe 82: The Dawn of Industrial 1% Optical Photometry
【24h】

Sloan Digital Sky Survey Standard Star Catalog for Stripe 82: The Dawn of Industrial 1% Optical Photometry

机译:Sloan数字天空测量条纹82的标准星型目录:工业1%光学测光的黎明

获取原文
获取外文期刊封面目录资料

摘要

We describe a standard star catalog constructed using multiple SDSS photometric observations (at least four per band, with a median of 10) in the ugriz system. The catalog includes 1.01 million nonvariable unresolved objects from the equatorial stripe 82 (|δJ2000.0| 1.266°) in the right ascension range 20h34m-4h00m and with the corresponding r-band (approximately Johnson V-band) magnitudes in the range 14-22. The distributions of measurements for individual sources demonstrate that the photometric pipeline correctly estimates random photometric errors, which are below 0.01 mag for stars brighter than 19.5, 20.5, 20.5, 20, and 18.5 in ugriz, respectively (about twice as good as for individual SDSS runs). Several independent tests of the internal consistency suggest that the spatial variation of photometric zero points is not larger than ~0.01 mag (rms). In addition to being the largest available data set with optical photometry internally consistent at the ~1% level, this catalog provides a practical definition of the SDSS photometric system. Using this catalog, we show that photometric zero points for SDSS observing runs can be calibrated within a nominal uncertainty of 2% even for data obtained through 1 mag thick clouds, and we demonstrate the existence of He and H white dwarf sequences using photometric data alone. Based on the properties of this catalog, we conclude that upcoming large-scale optical surveys such as the Large Synoptic Survey Telescope will be capable of delivering robust 1% photometry for billions of sources.
机译:我们描述了在ugriz系统中使用多个SDSS光度学观测(每个波段至少四个,中位数为10)构造的标准星表。该目录包括来自赤道条带82(|δJ2000.0| <1.266°)的101万个不可分辨的对象,它们的右提升范围为20h34m-4h00m,并且相应的r波段(大约为Johnson V波段)的幅度在14 -22。单个光源的测量分布表明,光度学管道正确估计了随机光度学误差,对于在ugriz中比19.5、20.5、20.5、20和18.5亮的恒星,其光度误差低于0.01 mag(约为单个SDSS的两倍)运行)。内部一致性的几个独立测试表明,光度零点的空间变化不大于〜0.01 mag(rms)。除了是最大的可用数据集,其内部的光学测光法在〜1%的水平上保持一致之外,该目录还提供了SDSS测光系统的实用定义。使用此目录,我们显示即使对于通过1 mag厚云获得的数据,也可以在2%的名义不确定度内校准SDSS观测运行的光度零点,并且我们仅使用光度数据即可证明He和H白矮星序列的存在。根据该目录的属性,我们得出结论,即将进行的大型光学勘测(例如大型天气观测望远镜)将能够为数十亿个光源提供可靠的1%测光法。
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号