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Commissioning of the Cosmic Origins Spectrograph on the Hubble Space Telescope: an overview of COS Servicing Mission Observatory Verification

机译:哈勃太空望远镜的宇宙起源光谱仪的调试:COS维修任务天文台验证概述

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The Cosmic Origins Spectrograph (COS) was installed into the Hubble Space Telescope (HST) during Servicing Mission 4 (SM4) in May 2009. COS is designed to obtain spectra of faint objects at moderate spectral resolution (R > 16,000) in two channels: FUV, covering wavelengths from 1150 to 1450 A; and NUV, covering 1700 - 3200 A. Two low resolution gratings (R > 1500) cover the < 900 - 2050 A (FUV) and 1650 - 3200 A (NUV) wavelength regions. An imaging capability is also available on the NUV channel.As part of the Hubble Servicing Mission Observatory Verification (SMOV) program, an extensive period of checkout, fine-tuning and preliminary characterization began after the installation of COS. The COS SMOV program was a cooperative effort between the Space Telescope Science Institute and the Instrument Definition Team based at the University of Colorado. Nearly 2800 COS exposures in 34 separate observing programs were obtained during the course of SMOV. Early activities included an initial instrument functional checkout, turn-on and initial characterization of the detectors, NUV and FUV channel focus and alignment, and target acquisition verification and assessment. Once this initial period was completed, science-related calibrations and verifications were performed in order to prepare the instrument for normal science operations. These activities included wavelength calibration, flux calibration, detector flat field characterization, spectroscopic performance verification, high S/N operation, and thermal and structural stability measurements. We discuss the design, execution and results of the SMOV program, including the interrelationships between the various tasks, and how the pre-launch plan was adjusted in real-time due to changing conditions.
机译:在2009年5月的维修任务4(SM4)期间,将宇宙起源光谱仪(COS)安装到了哈勃太空望远镜(HST)中。COS的设计目的是在两个通道中以中等光谱分辨率(R> 16,000)获得微弱物体的光谱: FUV,覆盖从1150至1450 A的波长;和NUV,覆盖1700-3200A。两个低分辨率光栅(R> 1500)覆盖<900-2050 A(FUV)和1650-3200 A(NUV)波长区域。 NUV通道上还具有成像功能。 作为哈勃维修任务天文台验证(SMOV)计划的一部分,在安装COS之后,开始了一段较长的检验,微调和初步表征的过程,COS SMOV计划是太空望远镜科学研究所和仪器之间的共同努力科罗拉多大学的定义团队。在SMOV过程中,通过34个独立的观测程序获得了近2800次COS曝光。早期的活动包括初始仪器功能检查,检测器的开启和初始表征,NUV和FUV通道的聚焦和对准以及目标采集的验证和评估。初始阶段完成后,将进行与科学相关的校准和验证,以便为正常的科学操作准备仪器。这些活动包括波长校准,通量校准,探测器平场表征,光谱性能验证,高信噪比操作以及热和结构稳定性测量。我们讨论了SMOV程序的设计,执行和结果,包括各种任务之间的相互关系,以及由于条件变化而实时调整发布前计划的方式。

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