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Preliminary optical design for a 4.0-m f/2.19 prime focus field corrector with a 2.0-degree field of view

机译:初步光学设计为4.0 m / 2.19 Prime焦点场校正器,具有2.0度的视野

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Direct-imaging surveys require telescope designs which maximize the product of the primary mirror diameter times the field of view. While a 4.0-m telescope would not be considered "large" by modern standards, the provision of a 2.0-degree field corrector would make it comparable in imaging information-gathering capacity to an 8.0-m telescope with a 1.0-degree field corrector which is at or near the present state-of-the-art. We have explored plausible optical design options for such a 4.0-m telecope within the confines of a set of specifications which emphasize practical issues. These include realistic image quality requirements, mechanical simplicity, ease of construction, minimum cost and freedom from restrictive constraints on the primary mirror shape and the telescope structure, such that it could potentially be used in other optical configurations. We present a mechanically robust optical solution which uses a 4.0-m f/2.08 parabolic primary mirror and a refracting field corrector containing 4 powered lens elements with 2 mild aspherics located on softly curved surfaces, ample room for filter(s) and a shutter, with a flat vacuum dewar window and a flat 2.0-degree diameter field of view. We discuss our specifications and we provide a fully-quantitative system prescription as well as our analysis of the system's expected direct-imaging performance in the traditional Umod, B, V, R, (V+R) and I passbands. While we recognize that other optical designs may prove to be superior to ours by some standard(s) of measure, we believe that our solution provides a useful and realistic baseline design which is competitive for the intended purposes.
机译:直接成像调查需要望远镜设计,最大化初级镜径直径乘以视野的产品。虽然通过现代标准,4.0米的望远镜不会被视为“大”,但提供2.0度校正器的提供将使成像信息收集能力与8.0米望远镜具有1.0度的校正器的成像信息收集容量相当在目前的最先进状态。我们在一套规格的范围内探索了这种4.0米的遥控器的合理光学设计选项,强调了实际问题。这些包括现实的图像质量要求,机械简洁性,易于施工,最小成本和自由度限制的限制性限制和望远镜结构,使得它可能涉及其他光学配置。我们提出了一种机械稳健的光学解决方案,使用4.0mf / 2.08抛物面的主镜和折射场校正器,其中包含4个动力镜头元件,位于柔和的弯曲表面上的2个温和的非球面,有充足的过滤器空间和快门平坦的真空露窗和平坦的2.0度直径的视野。我们讨论了我们的规格,我们提供了一个完全定量的系统处方,以及我们对传统UMOD,B,V,R,(V + R)和我的通带中系统预期的直接成像性能的分析。虽然我们认识到其他光学设计可能被证明是由一些标准衡量的(S)优于我们的,我们相信,我们的解决方案提供了一个有用的和现实的基线设计是于既定目的的竞争力。

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