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Design, construction, and implementation of a ground-based solar spectrograph for the national student solar spectrograph competition

机译:为全国学生太阳光谱仪比赛设计,建造和实施地面太阳光谱仪

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A solar spectrograph is an instrument that takes incoming sunlight over a specified portion of the sun's emitted electromagnetic spectrum and separates the light into its constituent frequency components, or spectrum. The components are then sent to a detector that measures intensity, which reveals the location of spectral properties of the light such as absorption and emission lines. The National Student Solar Spectrograph Competition (NSSSC) is a Montana Space Grant Consortium sponsored competition where undergraduate student teams from across the country design, build, and implement a ground-based solar spectrograph to perform any solar related task and demonstrate their spectrographs for the competition in May 2012 in Bozeman, MT. Each team is given a 2,000-dollar budget to build their spectrograph, which cannot be exceeded, and all spectrographs must follow regulations in the NSSSC guidelines. This team designed a spectrograph to be capable of imaging the sun across the visible spectrum using spatial filters and a standard photo detector rather than a traditional charge-coupled device due to budget limitations. The spectrograph analyzes the spectrum of small sections of the sun to determine how the spectrum varies across solar features such as the corona, active regions, and quiet regions. In addition to solar imaging, the spectrograph will also analyze atmospheric absorption of the solar spectrum by comparing the measured spectrum to the theoretical spectrum calculated from the blackbody equation.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:太阳光谱仪是一种将入射的太阳光吸收到太阳发出的电磁光谱的特定部分并将其分离成其组成的频率分量或频谱的仪器。然后将这些成分发送到检测强度的检测器,该检测器会显示光的光谱特性(例如吸收和发射线)的位置。全国学生太阳光谱仪竞赛(NSSSC)是蒙大拿州太空赠款协会赞助的竞赛,来自全国各地的大学生团队设计,建造和实施了地面太阳光谱仪,以执行任何与太阳相关的任务并展示其光谱仪于2012年5月在蒙大拿州的博兹曼市举行。每个团队将获得2,000美元的预算来构建他们的光谱仪,这是不能超过的,所有光谱仪必须遵循NSSSC指南中的规定。该团队设计了一种光谱仪,使其能够使用空间滤光片和标准光电探测器对可见光谱中的太阳进行成像,但由于预算有限,因此无法使用传统的电荷耦合器件。光谱仪分析太阳的小部分的光谱,以确定该光谱如何在日光特征(例如日冕,活动区域和安静区域)之间变化。除太阳成像外,光谱仪还将通过比较测得的光谱与根据黑体方程计算出的理论光谱来分析太阳光谱在大气中的吸收。©(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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