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Characterizing the red optical sky background fluctuations from narrow-band imaging

机译:通过窄带成像表征红色的光学天空背景波动

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The detection and characterization of the physical properties of very distant galaxies will be one the prominent science case of all future Extremely Large Telescopes, including the 39m E-ELT. Multi-Object Spectroscopic instruments are potentially very important tools for studying these objects, and in particular fiber-based concepts. However, detecting and studying such faint and distant sources will require subtraction of the sky background signal (i.e., between OH airglow lines) with an accuracy of 1%. This requires a precise and accurate knowledge of the sky background temporal and spatial fluctuations. Using FORS2 narrow-band filter imaging data, we are currently investigating what are the fluctuations of the sky background at 9000A. We present preliminary results of sky background fluctuations from this study over spatial scales reaching 4 arcmin, as well as first glimpses into the temporal variations of such fluctuations over timescales of the order of the hour. This study (and other complementary on-going studies) will be essential in designing the next-generation fiber-fed instruments for the E-ELT.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:对遥远星系的物理特性的检测和表征将是包括39m E-ELT在内的所有未来超大型望远镜的突出科学案例之一。多目标光谱仪器是研究这些目标,尤其是基于光纤的概念的潜在非常重要的工具。但是,检测和研究这种微弱和遥远的源将需要减去天空背景信号(即OH气辉线之间),精度为1%。这需要对天空背景的时空波动具有精确的认识。目前,我们使用FORS2窄带滤波器成像数据来研究9000A时天空背景的波动。我们提供了这项研究在达到4 arcmin的空间尺度上的天空背景波动的初步结果,并首次了解了这种波动在小时量级的时间尺度上的时间变化。这项研究(以及其他正在进行的补充研究)对于为E-ELT设计下一代光纤供电的仪器至关重要。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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