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Design and Development of WFOS, the Wide-Field Optical Spectrograph for the Thirty Meter Telescope
Steidel, Charles1; Peng, Eric2; Fucik, Jason1; Nash, Reston1; Kaye, Stephen1; Jacoby, George3; Delabre, Bernard3; Sethuram, Ramya4; Divakar, Devika4; Varshney, Hari Mohan5; Thirupathi, Sivarani3; Uraguchi, Fumihiro6; Ozaki, Shinobu6; Ji, Hangxin7; Lv, Tao8; Chiu, Kent9; Zhu, Qingfeng9; Andersen, David3; Miles, John3; Lasi, Davide3
2022
会议名称Conference on Ground-Based and Airborne Instrumentation for Astronomy IX
会议录名称GROUND-BASED AND AIRBORNE INSTRUMENTATION FOR ASTRONOMY IX
卷号12184
会议日期2022-07-17
会议地点Montreal, CANADA
出版者SPIE-INT SOC OPTICAL ENGINEERING
产权排序8
摘要

We present the current design of WFOS, a wide-field UV/optical (0.31-1.0 mu m) imaging spectrograph planned for first-light on the TMT International Observatory 30 m telescope. WFOS is optimized for high sensitivity across the entire optical waveband for low-to-moderate resolution (R similar to 1500-5000) long-slit and multi-slit spectroscopy of very faint targets over a contiguous field of view of 8'.3x3'.0 at the f/15 Nasmyth focus of TMT. A key design goal for WFOS is stability and repeatability in all observing modes, made possible by its gravity-invariant opto-mechanical structure, with a vertical rotation axis and all reconfigurable components moving only in planes defined by tiered optical benches parallel to the Nasmyth platform. WFOS's optics include a linear ADC correcting a 9' diameter field, including both the science FoV and 4 patrolling acquisition, guiding, and wavefront sensing camera systems; a novel 2-mirror reflective collimator allowing the science FoV to be centered on the telescope optical axis; a dichroic beamsplitter dividing the collimated beam into 2 wavelength-optimized spectrometer channels (blue: 0.31-0.56 mu m; red: 0.54-1.04 mu m); selectable transmissive dispersers (VPH and/or VBG) with remotely configurable grating tilt (angle of incidence) and camera articulation that enable optimization of diffraction efficiency and wavelength coverage in each channel; all-refractive, wavelength-optimized f/2 spectrograph cameras, and UV/blue and red-optimized detector systems. The predicted instrumental throughput of WFOS for spectroscopy averages > 56% over the full 0.31-1 mu m range, from the ADC to the detector. When combined with the 30 m TMT aperture, WFOS will realize a factor of similar to 20 gain in sensitivity compared to the current state of the art on 8-10 m-class telescopes.

关键词Instrumentation Spectrograph TMT UV/optical multi-slit spectrometer
作者部门光电跟踪与测量技术研究室
DOI10.1117/12.2629464
收录类别CPCI
ISBN号978-1-5106-5350-4; 978-1-5106-5349-8
语种英语
ISSN号0277-786X;1996-756X
WOS记录号WOS:000860684700054
引用统计
被引频次:9[WOS]   [WOS记录]     [WOS相关记录]
文献类型会议论文
条目标识符http://ir.opt.ac.cn/handle/181661/96207
专题光电跟踪与测量技术研究室
通讯作者Steidel, Charles
作者单位1.CALTECH, Pasadena, CA 91125 USA
2.Peking Univ, Beijing, Peoples R China
3.TMT Int Observ, Pasadena, CA USA
4.India TMT Coordinat Ctr, Bengaluru, India
5.Indian Inst Astrophys, Bengaluru, India
6.Nat Astron Observ Japan, Tokyo, Japan
7.Nat Astron Observ China, Nanjing Inst Astron Opt & Technol, Beijing, Peoples R China
8.Xian Inst Opt & Precis Mech, Xian, Shaanxi, Peoples R China
9.Univ Sci & Technol China, Hefei, Anhui, Peoples R China
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Steidel, Charles,Peng, Eric,Fucik, Jason,et al. Design and Development of WFOS, the Wide-Field Optical Spectrograph for the Thirty Meter Telescope[C]:SPIE-INT SOC OPTICAL ENGINEERING,2022.
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