首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >A synthesis of star calibration techniques for ground-based narrowband electron-multiplying charge-coupled device imagers used in auroral photometry
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A synthesis of star calibration techniques for ground-based narrowband electron-multiplying charge-coupled device imagers used in auroral photometry

机译:极光光度学中基于地面的窄带电子倍增电荷耦合器件成像器的星形校准技术的综合

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摘要

A technique is presented for the periodic and systematic calibration of ground-based optical imagers. It is important to have a common system of units (Rayleighs or photon flux) for cross comparison as well as self-comparison over time. With the advancement in technology, the sensitivity of these imagers has improved so that stars can be used for more precise calibration. Background subtraction, flat fielding, star mapping, and other common techniques are combined in deriving a calibration technique appropriate for a variety of ground-based imager installations. Spectral (4278, 5577, and 8446 ?) ground-based imager data with multiple fields of view (19, 47, and 180°) are processed and calibrated using the techniques developed. The calibration techniques applied result in intensity measurements in agreement between different imagers using identical spectral filtering, and the intensity at each wavelength observed is within the expected range of auroral measurements. The application of these star calibration techniques, which convert raw imager counts into units of photon flux, makes it possible to do quantitative photometry. The computed photon fluxes, in units of Rayleighs, can be used for the absolute photometry between instruments or as input parameters for auroral electron transport models.
机译:提出了一种用于定期和系统地基光学成像仪校准的技术。重要的是要有一个通用的单位系统(瑞利或光子通量)以进行交叉比较以及随时间进行自我比较。随着技术的进步,这些成像仪的灵敏度得到了提高,因此可以使用恒星进行更精确的校准。结合了背景减法,平面视场,星图和其他常用技术,以得出适用于各种地面成像仪安装的校准技术。使用开发的技术处理和校准具有多个视场(19、47和180°)的光谱(4278、5577和8446?)基于地面的成像仪数据。所应用的校准技术可使用相同的光谱过滤在不同成像器之间达成一致的强度测量,并且观察到的每个波长处的强度均在极光测量的预期范围内。这些星形校准技术的应用将原始成像器的计数转换为光子通量的单位,从而可以进行定量光度法。计算得出的光子通量,以瑞利为单位,可用于仪器之间的绝对光度法,或用作极光电子传输模型的输入参数。

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