用于TMT的宽视场光谱仪(WFOS):光纤-WFOS光学设计(会议报告)

R. Kupke, Hangxin Ji, S. P. Nadar, Devika K. Divakar, L. Gilles
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引用次数: 1

摘要

TMT的宽视场光谱仪是一个多目标的第一光仪器,具有宽连续波长覆盖范围(0.310 - 1.0 m),中等光谱分辨率为R = 5000。国际WFOS设计团队最近完成了两种设计方法的选择:基于切片机的单片架构和基于光纤的模块化概念。本文提出了基于光纤的光谱仪的端到端概念设计。其中包括用于将光耦合到光纤中的前端减焦光学器件,光谱仪准直器和相机光学器件,以及每个颜色通道的色散结构。高复用光纤- wfos提出了一个独特的设计挑战,在保持模块化光谱仪低成本的同时保持TMT,特别是TMT加上地面层自适应光学(GLAO)提供的性能提升。给出了完整的性能分析,包括预测的光谱分辨率和吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The wide field optical spectrograph (WFOS) for TMT: fiber-WFOS optical design (Conference Presentation)
TMT’s wide field optical spectrograph is a multi-object, first-light instrument with broad continuous wavelength coverage (0.310 – 1.0 m) at a moderate spectral resolution of R = 5000. The international WFOS design team has recently completed the downselect of two design approaches: a slicer-based monolithic architecture and a fiber-based modular concept. We present here the end-to-end conceptual design for the fiber-based optical spectrograph. Included are the front-end focal reduction optics for coupling light into the fibers, the spectrograph collimator and camera optics, and the dispersive architecture for each color channel. The highly multiplexed fiber-WFOS presents a unique design challenge in keeping costs for the modular spectrographs low while maintaining performance gains afforded by the TMT, and in particular the TMT plus ground-layer adaptive optics (GLAO). A full performance analysis including predicted spectral resolution and throughput is presented for the design.
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