Further development and testing of TCal: a mobile spectrophotometric calibration unit for astronomical imaging systems

P. Ferguson, L. Barba, D. Depoy, L. Schmidt, J. Marshall, T. Prochaska, Leonardo Bush, J. Mason, M. Sauseda
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Abstract

We describe and present initial testing of TCal, a mobile spectrophotometric calibration system that will be used to characterize the throughput as a function of wavelength for imaging systems at observatories around the world. TCal measurements will enhance the science return from follow-up observations of imaging surveys such as LSST (Large Synoptic Survey Telescope) and DES (Dark Energy Survey) by placing all tested imaging systems on a common photometric baseline. TCal uses a ~ 1 nm bandpass tunable light source to measure the instrumental response function of imaging systems from 300 nm to 1100 nm, including the telescope, optics, filters, windows, and detector. The system is comprised of a monochromator-based light source illuminating a dome flat field screen monitored by a calibrated CCD, which allows determination of the telescope throughput as a function of wavelength. This calibration will be performed at 1-8m telescopes that expect to devote time towards survey follow-up. Performing the calibration on these telescopes will reduce systematic errors due to small differences in bandpass, making follow-up efforts more precise and accurate.
进一步发展和测试TCal:一种用于天文成像系统的移动分光光度校准装置
我们描述并介绍了TCal的初步测试,TCal是一种移动分光光度计校准系统,将用于表征世界各地天文台成像系统的波长函数吞吐量。通过将所有测试的成像系统放在一个共同的光度基线上,TCal测量将提高LSST(大型综合巡天望远镜)和DES(暗能量巡天)等成像调查的后续观测的科学回报。TCal采用~ 1nm带通可调光源,测量300 ~ 1100nm范围内成像系统的仪器响应函数,包括望远镜、光学器件、滤光片、窗口和探测器。该系统由一个基于单色器的光源组成,该光源照亮了由校准CCD监控的圆顶平场屏幕,从而可以确定望远镜吞吐量作为波长的函数。这项校准将在1-8米望远镜上进行,预计将投入时间进行后续调查。对这些望远镜进行校准将减少由于带通的微小差异而导致的系统误差,使后续工作更加精确和准确。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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