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Conservation of etendue in a primary objective grating telescope

机译:施保初级客观光栅望远镜

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摘要

A novel telescope design that uses a primary objective grating has been shown to have valuable performance features for multiple object spectroscopy as well as a flat collector with relaxed figure tolerances suitable for membrane substrates. The commonly applied figure of merit called etendue takes on new meaning here when compared to telescopes which employ a parabolic mirror In this new telescope design, a mirror is in the secondary. One dimension of the mirror conforms to the familiar metrics for measuring field-of-view and surface area. However, in the other, an anamorphic magnification feature of plane gratings takes effect at angles of diffraction as subtended at grazing off the grating plane normal. When the secondary parabolic mirror is placed at a grazing angle, compression increases exponentially, permitting unprecedented fields-of-view, collection surface areas and aperture in one of the two dimensions. We provide an analysis that calculates the compression, resolution, and field-of-view. More importantly, we study how these parameters are conserved by a secondary parabolic mirror notwithstanding that the mirror diameter can be significantly less than the length of the primary objective grating. Zemax models are used to show that along the dimension of the grating, etendue is conserved in this telescope architecture.
机译:已经显示使用主要物镜光栅的新型望远镜设计具有多种物体光谱的有价值的性能特征,以及具有适用于膜基材的松弛图公差的平坦收集器。与在这种新的望远镜设计中使用抛物面镜的望远镜相比,常用的优点典型的优点涉及新含义,镜子在次级中。镜子的一个尺寸符合熟悉的指标,用于测量视野和表面积。然而,在另一方面,平面光栅的变形倍率特征在衍射的角度下生效,如在从光栅平面正常的锯切时呈上调。当辅助抛物线镜以放牧角度放置时,压缩呈指数增长,允许在两个维度之一中允许前所未有的视野,收集表面区域和孔。我们提供了一个分析,计算压缩,分辨率和视野。更重要的是,尽管镜子直径可以明显小于主要物镜光栅的长度,但我们研究这些参数是如何通过二次抛物面镜子保守的。 Zemax模型用于表明沿光栅的尺寸,在该望远镜架构中是节省的。

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