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Modeling the transmission and thermal emission in a pupil image behind the Keck II adaptive optics system

机译:在Keck II自适应光学系统后面的瞳孔图像中模拟透射和热发射

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摘要

The design and performance of astronomical instruments depend critically on the total system throughput as well as the background emission from the sky and instrumental sources. In designing a pupil stop for background- limited imaging, one seeks to balance throughput and background rejection to optimize measurement signal-to-noise ratios. Many sources affect transmission and emission in infrared imaging behind the Keck Observatory’s adaptive optics systems, such as telescope segments, segment gaps, secondary support structure, and AO bench optics. Here we describe an experiment, using the pupil-viewing mode of NIRC2, to image the pupil plane as a function of wavelength. We are developing an empirical model of throughput and background emission as a function of position in the pupil plane. This model will be used in part to inform the optimal design of cold pupils in future instruments, such as the new imaging camera for OSIRIS.
机译:天文仪器的设计和性能在很大程度上取决于系统的总吞吐量以及天空和仪器源的背景辐射。在设计用于背景受限成像的光阑时,人们试图平衡通量和背景抑制,以优化测量信噪比。凯克天文台的自适应光学系统背后的许多源会影响红外成像中的传输和发射,例如望远镜镜筒,镜筒间隙,辅助支撑结构和AO台式光学镜。在这里,我们描述了一个使用NIRC2的瞳孔观察模式将光瞳平面成像为波长函数的实验。我们正在开发作为光瞳平面位置函数的吞吐量和背景发射的经验模型。该模型将部分用于为将来的仪器(例如用于OSIRIS的新型成像相机)中的冷瞳孔优化设计提供信息。

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