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The faint intergalactic redshifted emission balloon and the cosmic web imager : two integral field spectrographs designed to study emission from the intergalactic medium

机译:微弱的星系间红移发射气球和宇宙网状成像仪:两个积分场光谱仪,用于研究星系间介质的发射

摘要

Gas in the intergalactic medium serves as the fuel for galaxies. It carries signatures of galactic feedback, including matter and energy outflows. Understanding the morphology, thermodynamics, chemistry, and kinematics of this gas is key to understanding galaxy formation and evolution. The principal method of characterizing this gas has been the study of the Lyman α forest and associated metal systems. While this work has yielded deep insights into the nature of intergalactic matter, the scarcity of suitable background sources does allow for a full three-dimensional picture. Numerical simulations and theoretical work indicate that this gas produces faint and extended recombinant line emission. Its signatures in Lyα(1216 Å), OVI(1033 Å), CIV(1550 Å) are expected to be the strongest. Recent advances in technology and fresh ideas in instrumentation are allowing access to the predicted surface brightness of intergalactic emission. The Faint Intergalactic Redshifted Emission Balloon (FIREBall) and the Cosmic Web Imager (CWI) are two integral field spectrographs probing different redshift regimes, which have been designed for the specific purpose of detecting and mapping emission from the intergalactic medium. FIREBall, operating in the balloon ultraviolet window around 2000 Å, probes the redshift range 0.3 z 1, while CWI, a ground-based optical instrument, studies the Universe at 2.5 z 7.0. Both instruments collected their first science data in mid-2009. This manuscript discusses the science case for the spectrographs, focuses on their designs, construction, testing, first light, target selection, observations, data reduction, and analysis. Initial results are presented and discussed.
机译:星系间介质中的气体用作星系的燃料。它带有银河反馈的特征,包括物质和能量的流出。了解这种气体的形态,热力学,化学和运动学是了解星系形成和演化的关键。表征这种气体的主要方法是研究Lymanα森林和相关金属系统。尽管这项工作对星系间物质的性质产生了深刻的见解,但由于缺乏合适的背景资料,因此无法获得完整的三维图。数值模拟和理论研究表明,这种气体产生了微弱的和延长的重组线发射。预期其在Lyα(1216Å),OVI(1033Å),CIV(1550 signature)中的签名最强。技术的最新进展和仪器仪表的新思想使人们能够获得银河系发射的预计表面亮度。微弱的星际红移发射气球(FIREBall)和宇宙Web成像仪(CWI)是探查不同红移制度的两个积分场光谱仪,它们的设计目的是特定于检测和绘制星系间介质的发射图。 FIREBall在2000 around左右的气球紫外线窗口中操作,探测红移范围0.3

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