VLT-CUBES图像切片机的设计

IF 2.7 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
Ariadna Calcines, Martyn Wells, Kieran O’Brien, Simon Morris, Walter Seifert, Alessio Zanutta, Chris Evans, Paolo Di Marcantonio
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引用次数: 4

摘要

CUBES是为甚大望远镜的卡塞格伦焦点设计的高效光谱仪,预计将于2028年投入使用。它被设计用于观察光谱范围从300到405nm的点或紧凑源。CUBES将提供两种光谱分辨率:高分辨率(HR)为\(\ge\) 20,000 R,低分辨率(LR)为\(\ge\) 5,000 R。这是通过对每个分辨率模式使用图像切片器来实现的。图像切片器将1.5arcsec × 10arcsec (HR)或6arcsec × 10arcsec (LR)的矩形天空视场重新格式化为六个并排的狭缝,形成光谱仪狭缝。狭缝尺寸HR为0.19mm \(\times\) 88mm, LR为0.77mm \(\times\) 88mm。切片镜的天空宽度和物理宽度分别为0.25arcsec/0.5mm (HR)和1arcsec/2mm (LR)。图像切片器减少了摄谱仪的入口狭缝长度,从而减小了摄谱仪光学器件的尺寸,而没有相关的狭缝损失。所提出的每个图像切片器由两个阵列的六个球面反射镜(切片镜和相机反射镜阵列)组成,它们为摄谱仪提供了一个直接的入口狭缝,几乎具有衍射限制的光学质量。本文介绍了A阶段概念设计最后的图像切片器的描述,包括其光学设计和预期性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Design of the VLT-CUBES image slicers:

Design of the VLT-CUBES image slicers:

CUBES is a high efficiency spectrograph designed for a Cassegrain focus of the Very Large Telescope and is expected to be in operation in 2028. It is designed to observe point or compact sources in a spectral range from 300 to 405nm. CUBES will provide two spectral resolving powers: R\(\ge\)20,000 for high resolution (HR) and R\(\ge\)5,000 for low resolution (LR). This is achieved by using an image slicer for each resolution mode. The image slicers re-format a rectangular on-sky field of view of either 1.5arcsec by 10arcsec (HR) or 6arcsec by 10arcsec (LR) into six side-by-side slitlets which form the spectrograph slit. The slit dimensions are 0.19mm \(\times\) 88mm for HR and 0.77mm \(\times\) 88mm for LR. The on-sky and physical widths of the slicer mirrors are 0.25arcsec/0.5mm (HR) and 1arcsec/2mm (LR). The image slicers reduce the spectrograph entrance slit etendue and hence the size of the spectrograph optics without associated slit losses. Each of the proposed image slicers consists of two arrays of six spherical mirrors (slicer mirror and camera mirror arrays) which provide a straight entrance slit to the spectrograph with almost diffraction-limited optical quality. This paper presents the description of the image slicers at the end of the Phase A conceptual design, including their optical design and expected performance.

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来源期刊
Experimental Astronomy
Experimental Astronomy 地学天文-天文与天体物理
CiteScore
5.30
自引率
3.30%
发文量
57
审稿时长
6-12 weeks
期刊介绍: Many new instruments for observing astronomical objects at a variety of wavelengths have been and are continually being developed. Furthermore, a vast amount of effort is being put into the development of new techniques for data analysis in order to cope with great streams of data collected by these instruments. Experimental Astronomy acts as a medium for the publication of papers of contemporary scientific interest on astrophysical instrumentation and methods necessary for the conduct of astronomy at all wavelength fields. Experimental Astronomy publishes full-length articles, research letters and reviews on developments in detection techniques, instruments, and data analysis and image processing techniques. Occasional special issues are published, giving an in-depth presentation of the instrumentation and/or analysis connected with specific projects, such as satellite experiments or ground-based telescopes, or of specialized techniques.
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