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Systematic program for ground-based Fabry-Perot observations of the neutral hydrogen exosphere

机译:用于中性氢气圈的地面法布里-珀罗地面观测的系统程序

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Abstract: Large gains in the sensitivity of Fabry-Perots for geocoronal research have been achieved at the University of Wisconsin employing the technique of CCD annular summing spectroscopy. Earlier 'demonstration observations' of this technique lead to a significant new understanding of geocoronal hydrogen excitation. This paper will outline a new ground-based observing program which is building on these earlier observations in order to obtain definitive data regarding the physical processes which govern the abundance and transport of atomic hydrogen in the earth's atmosphere. Two double-etalon Fabry-Perot spectrometers have been installed at the University of Wisconsin's Pine Bluff Observatory (WI) for the purpose of making a systematic series of high spectral resolution (R approximately equals 100,000) line profile, and intensity observations of geocoronal hydrogen nightglow. For the first time it will be possible to obtain coincident observations of geocoronal hydrogen Balmer-alpha and Balmer- beta with sufficient signal-to-noise for detailed line profile studies. Because the geocoronal Balmer-beta emission is about one tenth the intensity of Balmer-alpha, the fitness of this line has frustrated past attempts to determine its profile; however, gains in sensitivity afforded by the annular-summing technique make these new observations possible. It is anticipated that these simultaneous observations will provide a means by which to isolate previously observed perturbations to the Balmer-alpha line, the components of which may arise from both contributions due to quantum mechanical fine structure and the non-Maxwellian dynamics of the hydrogen exosphere. Each of these instruments employs the annular summing technique in which the Fabry-Perot's annular fringe pattern is imaged onto a low noise CCD chip. Using the property that equal area annuli correspond to equal spectral intervals, software is used to divide the CCD image into equal area annular bins, whereby the Fabry-Perot interference pattern is converted into a useful spectral profile. This paper will describe the instrumentation, and how it relates to the planned observational program. !38
机译:摘要:威斯康星大学采用CCD环形求和光谱技术,在法布里-珀罗(Fabry-Perots)的地质冠冕研究中获得了很大的收益。这项技术的早期“演示观察”导致对地球冠冕氢激发的重要新认识。本文将概述基于这些早期观测的新的地面观测计划,以获取有关控制地球大气中氢原子的丰度和传输的物理过程的权威数据。威斯康星大学的Pine Bluff天文台(WI)已安装了两个双标准具法布里-珀罗光谱仪,目的是进行系统的一系列高光谱分辨率(R约等于100,000)线轮廓,并进行对冠冕氢夜光的强度观测。首次有可能获得具有足够信噪比的地质冠状氢Balmer-α和Balmer-β的一致观测结果,以进行详细的线剖面研究。由于地球冠冕的Balmer-β发射强度约为Balmer-α强度的十分之一,因此该线的适用性使过去确定其轮廓的尝试受挫。然而,环形求和技术带来的灵敏度提高使这些新发现成为可能。预计这些同时进行的观察将提供一种手段,将先前观察到的对Balmer-α线的扰动隔离开来,该扰动的组成可能是由于量子力学精细结构和氢外层层的非麦克斯韦动力学引起的。 。这些仪器中的每一个都采用环形求和技术,其中将Fabry-Perot的环形条纹图案成像到低噪声CCD芯片上。利用相等面积的环形空间对应相等光谱间隔的特性,使用软件将CCD图像划分为相等面积的环形光柱,从而将Fabry-Perot干涉图样转换成有用的光谱轮廓。本文将介绍仪器及其与计划的观测计划的关系。 !38

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