首页> 外文会议>Conference on Instrument Design and Performance for Optical/Infrared Ground-based Telescopes Pt.3, Aug 25-28, 2002, Waikoloa, Hawaii, USA >Back and forth spectroscopy: optimization of an optical nod-and-shuffle technique to reach fainter objects and increase the multiplex gain on multi object spectrographs
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Back and forth spectroscopy: optimization of an optical nod-and-shuffle technique to reach fainter objects and increase the multiplex gain on multi object spectrographs

机译:来回光谱:优化光学点和混洗技术以到达较暗的物体并增加多物体光谱仪上的多路复用增益

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Based on several on-sky tests using the Multi-Object Spectrograph at the Canada-Prance-Hawaii Telescope, we present refinements of the faint objects optical spectroscopy technique we proposed in 1994 (initially named "Va-et-Vient" = "Back-and-Forth"), a nod-and-shuffle technique that preserves a sky dominated photon noise regime. We validated schemes that allow 100% of the total telescope time used to integrate the light from the scientific objects. We also investigated how to optimize the configuration of the charge shifting in order to use minimal space on the detector. For typical distant galaxy fields (profile dominated by seeing), we demonstrated an increase by a factor of approximately 2 of the multiplex gain and even higher for more compact sources. The technique proves perfectly apt at eliminating all the systematic errors that may cause the saturation of the signal-to-noise ratio: slit defects, CCD fringing, and flat-field residuals. This technique is also the most efficient and unique approach to use curved slits.
机译:基于加拿大-普兰斯-夏威夷望远镜使用多目标光谱仪进行的几次空中测试,我们对1994年提出的微弱物体光谱学技术进行了改进(最初命名为“ Va-et-Vient” =“ Back- and-Forth”),一种点头和混洗技术,可保留天空主导的光子噪声状态。我们验证了允许将总望远镜时间的100%用于整合来自科学物体的光的方案。我们还研究了如何优化电荷转移的配置,以便在检测器上使用最小的空间。对于典型的遥远星系场(以视线为主的剖面),我们证明了多路复用增益的增加幅度约为2倍,对于更紧凑的源来说,甚至更高。该技术被证明非常适合消除所有可能导致信噪比饱和的系统误差:缝隙缺陷,CCD条纹和平坦场残差。该技术也是使用弯曲缝隙的最有效,最独特的方法。

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