NIAOT OpenIR
A new spectrograph of bi-channel with ultrawide band and high flux for MOST (SCUTUM) telescope
Ji HX(季杭馨); Li J(李军); Dai SX(戴松新); Zhang SL(张淑玲); Chen Y(陈忆); Pan JY(潘锦语); Xu QM(徐启蒙)
2024-07-18
会议名称SPIE Astronomical Telescopes + Instrumentation
会议录名称Ground-based and Airborne Instrumentation for Astronomy X
卷号SPIE vol 13096
会议日期2024
会议地点Yokohama, Japan
摘要

The Muztage-Ata One-point-nine-three-meter Synergy Telescope(MOST)is a novel equatorial telescope cur rently being constructed in China.Spectroscopy of bi-Channel with UlTra-wide band and high flUx for MOST (SCUTUM)serves as one of the first-light instruments and adopts a modified FOSC type design with two chan nels.The design incorporates a shared catadioptric collimator followed by separate refraction cameras in each channel,where in between filters and grisms are inserted into the optical path through two rotating wheel units. The instrument converts the F/8 beam from the telescope to a nearly F/4.3 beam.The spectroscopy of SCU TUM can be performed in the wavelength range 310-1000nm in one exposure,offering various choices of grisms and slits with resolution ranging from 250 to 7500.The theoretical monochromatic RMS spot sizes are expected to be between 0.04′ ′and 0.26 ′′.To optimize total throughput,SCUTUM employs high-efficiency optical ele ments,coatings,and sensitivity-enhanced detectors within its operational band.The overall transmission from the collimator to the detector is anticipated to exceed 20%at 330nm and surpass 40%at wavelengths above 355nm when operating in R≤3000 mode.The designed weight of this instrument amounts to approximately 280kg.The instrument is currently planned to be assembled in the Institute laboratory in September and to be commissioned on MOST in 2025.

关键词Low-medium Spectrograph FOSC Multi resolution mode Grism Wide-band UV Time-domain
学科领域天文技术与方法
文献类型会议论文
条目标识符http://ir.niaot.ac.cn/handle/114a32/2223
专题中国科学院南京天文光学技术研究所知识成果
会议论文
作者单位南京天文光学技术研究所
推荐引用方式
GB/T 7714
Ji HX,Li J,Dai SX,et al. A new spectrograph of bi-channel with ultrawide band and high flux for MOST (SCUTUM) telescope[C],2024.
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