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The Simons Observatory: modeling optical systematics in the Large Aperture Telescope

机译:西蒙斯天文台:在大孔径望远镜中建模光学系统

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We present geometrical and physical optics simulation results for the Simons Observatory Large Aperture Telescope. This work was developed as part of the general design process for the telescope, allowing us to evaluate the impact of various design choices on performance metrics and potential systematic effects. The primary goal of the simulations was to evaluate the final design of the reflectors and the cold optics that are now being built. We describe nonsequential ray tracing used to inform the design of the cold optics, including absorbers internal to each optics tube. We discuss ray tracing simulations of the telescope structure that allow us to determine geometries that minimize detector loading and mitigate spurious near-field effects that have not been resolved by the internal baffling. We also describe physical optics simulations, performed over a range of frequencies and field locations, that produce estimates of monochromatic far-field beam patterns, which in turn are used to gauge general optical performance. Finally, we describe simulations that shed light on beam sidelobes from panel gap diffraction. (C) 2021 Optical Society of America
机译:我们给出了西蒙斯天文台大口径望远镜的几何和物理光学模拟结果。这项工作是作为望远镜总体设计过程的一部分开发的,使我们能够评估各种设计选择对性能指标和潜在系统影响的影响。模拟的主要目标是评估目前正在建造的反射器和冷光学器件的最终设计。我们描述了用于通知冷光学设计的非连续光线追踪,包括每个光学管内部的吸收器。我们讨论了望远镜结构的光线跟踪模拟,它使我们能够确定几何结构,从而最大限度地减少探测器负载,并缓解内部挡板尚未解决的虚假近场效应。我们还描述了在一系列频率和场位置上进行的物理光学模拟,这些模拟产生单色远场光束模式的估计值,进而用于衡量一般光学性能。最后,我们描述了通过面板间隙衍射产生光束旁瓣的模拟。(2021)美国光学学会

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