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A Fourier domain model for estimating astrometry errors due to static and quasi-static optical surface errors

机译:用于估计由于静态和准静态光学表面误差而引起的天文测量误差的傅里叶域模型

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Context. The wavefront aberrations due to optical surface errors in adaptive optics systems and science instruments can be a significant error source for high precision astrometry. Aims. This report derives formulas for evaluating these errors which may be useful in developing astrometry error budgets and optical surface quality specifications. Methods. A Fourier domain approach is used, and the errors on each optical surface are modeled as “phase screens” with stationary statistics at one or several conjugate ranges from the optical system pupil. Three classes of error are considered: (i) errors in initially calibrating the effects of static surface errors; (ii) the effects of beam translation, or “wander,” across optical surfaces due to (for example) instrument boresighting error; and (iii) quasistatic surface errors which change from one observation to the next. Results. For each of these effects, we develop formulas describing the position estimation errors in a single observation of a science field, as well as the differential error between two separate observations. Sample numerical results are presented for the three classes of error, including some sample computations for the Thirty Meter Telescope and the NFIRAOS first-light adaptive optics system.
机译:上下文。自适应光学系统和科学仪器中由于光学表面误差引起的波前像差可能是高精度天文测量的重要误差来源。目的该报告得出了用于评估这些误差的公式,这些公式可能对制定天文测量误差预算和光学表面质量规范很有用。方法。使用了傅里叶域方法,每个光学表面上的误差都被建模为“相位屏幕”,并在距光学系统光瞳一个或几个共轭范围内具有静态统计量。考虑了三类误差:(i)最初校准静态表面误差影响时的误差; (ii)由于(例如)仪器视轴误差而导致的光束在光学表面上平移或“漂移”的影响; (iii)准静态表面误差,从一次观测到另一次观测变化。结果。对于这些效应中的每一种,我们都会开发公式来描述科学领域的单个观测值中的位置估计误差,以及两个独立观测值之间的微分误差。给出了针对三类误差的样本数值结果,包括针对三十米望远镜和NFIRAOS第一光自适应光学系统的一些样本计算。

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