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Analysis of normalized point source sensitivity as a performance metric for large telescopes

机译:归一化点源灵敏度分析作为大型望远镜的性能指标

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摘要

We investigate a new metric, the normalized point source sensitivity (PSSN), for characterizing the seeing-limited performance of large telescopes. As the PSSN metric is directly related to the photometric error of background limited observations, it represents the efficiency loss in telescope observing time. The PSSN metric properly accounts for the optical consequences of wave front spatial frequency distributions due to different error sources, which differentiates from traditional metrics such as the 80percent encircled energy diameter and the central intensity ratio. We analytically show that multiplication of individual PSSN values due to individual errors is a good approximation for the total PSSN when various errors are considered simultaneously. We also numerically confirm this feature for Zernike aberrations as well as for the numerous error sources considered in the error budget of the Thirty Meter Telescope (TMT) using a ray optics simulator. Additionally, we discuss other pertinent features of the PSSN, including its relations to Zernike aberration, RMS wave front error, and central intensity ratio.
机译:我们研究了一种新的指标,归一化点源灵敏度(PSSN),用于表征大型望远镜的视线受限性能。由于PSSN度量与背景有限观测的光度误差直接相关,因此它代表了望远镜观测时间的效率损失。 PSSN度量标准适当地考虑了由于错误源不同而引起的波前空间频率分布的光学后果,这与传统的度量标准(例如80%环绕的能量直径和中心强度比)不同。我们分析表明,当同时考虑各种错误时,由于各个错误而导致的各个PSSN值的乘积是总PSSN的良好近似值。我们还使用射线光学模拟器对Zernike像差以及在三十米望远镜(TMT)的误差预算中考虑的众多误差源进行了数值确认。此外,我们讨论了PSSN的其他相关功能,包括其与Zernike像差,RMS波前误差和中心强度比的关系。

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