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Enhancement of the Spitzer Infrared Array Camera Distortion Correction for Parallax Measurements

机译:用于视差测量的Spitzer红外阵列摄像机畸变校正的增强

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The Spitzer Space Telescope Infrared Array (IRAC) offers a rare opportunity to measure distances and determine physical properties of the faintest and coldest brown dwarfs. The current distortion correction is a 3rd order polynomial represented by TAN-SIP parameters within the headers. The current correction, good to 100 mas, was derived from deep imaging, using marginally resolved galaxies in some cases, and has remained stable throughout both the cryogenic and warm mission. Using recent Spitzer calibration observations mapped to HST/ACS calibration observations of 47 Tuc with an absolute accuracy good to 1 mas, we are working towards a possible 5th order polynomial correction that theoretically could allow measurements to within 20 mas. Extensive testing, using observations of 47 Tuc, NGC 6791 and NGC 2264, are underway, after which the new parameters will be used to update all the 3.6 and 4.5um data taken within warm and cryogenic missions. We anticipate if achievable, this new accuracy could be combined with other ongoing enhancements (Ingalls et al, 9143-52) that will permit measurements of parallaxes out to about 50 pc, increasing the volume surveyed by a factor of 100, and enabling new capabilities such as luminosity measurements of the population of young brown dwarfs in the beta Pictoris moving group.
机译:Spitzer空间望远镜红外阵列(IRAC)提供了难得的机会来测量距离并确定最微弱和最冷的棕色小矮星的物理属性。当前失真校正是由标头内的TAN-SIP参数表示的三阶多项式。目前的校正效果好于100 mas,它来自于深成像,在某些情况下使用边缘分辨星系,并且在低温任务和热力任务期间均保持稳定。使用最新的Spitzer校准观测值映射到47 Tuc的HST / ACS校准观测值,其绝对精度达到1 mas,我们正在努力进行可能的5阶多项式校正,理论上可以在20 mas之内进行测量。目前正在使用47个Tuc,NGC 6791和NGC 2264进行广泛的测试,之后将使用新参数更新在暖和低温任务中获取的所有3.6和4.5um数据。我们预计,如果可以实现,则可以将这种新的精度与其他正在进行的增强功能结合使用(Ingalls等,9143-52),从而可以将视差测量到大约50 pc,将被调查的体积增加了100倍,并启用了新功能例如在Beta Pictoris移动组中对年轻褐矮星种群进行的亮度测量。

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