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Thirty Meter Telescope Astrometry Error Budget

机译:三十米望远镜星形误差预算

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The Thirty Meter Telescope (TMT) with its first-light multi-conjugate adaptive optics system, NFIRAOS, and high-resolution imager, IRIS, is expected to take differential astrometric measurements with an accuracy on the order of tens of micro arcsec. This requires the control, correction, characterization and calibration of a large number of error sources and uncertainties, many of which have magnitudes much in excess of this level of accuracy. In addition to designing the observatory such that very high precision and accuracy astrometric observations are enabled, satisfying the TMT requirements can only be achieved by a careful calibration, observation and data reduction strategy. In this paper, we present descriptions of the individual errors sources, how and when they apply to different astrometry science cases and the mitigation methods required for each of them, as well as example results for individual error terms and the overall error budgets for a variety of different science cases.
机译:预计,三十米望远镜(TMT)与其第一轻的多共轭自适应光学系统,NfiraOS和高分辨率成像器,虹膜预计将采用差异的星形测量测量,精度大约几十微克弧度。这需要大量误差源和不确定性的控制,校正,表征和校准,其中许多具有超出这种精度的大小。除了设计天文台之外,使能够实现非常高的精度和精度的天文学观察,满足TMT要求只能通过仔细校准,观察和数据减少策略来实现。在本文中,我们呈现了各个错误来源的描述,如何以及何时适用于不同的ASTROMY科学案例以及每个误差所需的缓解方法,以及各个错误术语的示例结果和各种错误预算作者:王莹,不同的科学案例。

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