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Improving photometric calibration of meteor video camera systems

机译:改善流星摄像机系统的光度校准

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摘要

We present the results of new calibration tests performed by the NASA Meteoroid Environment Office (MEO) designed to help quantify and minimize systematic uncertainties in meteor photometry from video camera observations. These systematic uncertainties can be categorized by two main sources: an imperfect understanding of the linearity correction for the MEO's Watec 902H2 Ultimate video cameras and uncertainties in meteor magnitudes arising from transformations between the Watec camera's Sony EX-View HAD bandpass and the bandpasses used to determine reference star magnitudes. To address the first point, we have measured the linearity response of the MEO's standard meteor video cameras using two independent laboratory tests on eight cameras. Our empirically determined linearity correction is critical for performing accurate photometry at low camera intensity levels. With regards to the second point, we have calculated synthetic magnitudes in the EX bandpass for reference stars. These synthetic magnitudes enable direct calculations of the meteor's photometric flux within the camera bandpass without requiring any assumptions of its spectral energy distribution. Systematic uncertainties in the synthetic magnitudes of individual reference stars are estimated at similar to 0.20 mag, and are limited by the available spectral information in the reference catalogs. These two improvements allow for zero-points accurate to similar to 0.05 - 0.10 mag in both filtered and unfiltered camera observations with no evidence for lingering systematics. These improvements are essential to accurately measuring photometric masses of individual meteors and source mass indexes.
机译:我们介绍了NASA流星环境办公室(MEO)进行的新校准测试的结果,旨在帮助量化和最小化从摄像机观测到的流星光度学中的系统不确定性。这些系统的不确定性可以从两个主要方面进行分类:对MEO的Watec 902H2 Ultimate摄像机的线性校正的不完全了解,以及Watec摄像机的Sony EX-View HAD带通与用于确定信号的带通之间的转换而引起的流星大小不确定性参考星等。为了解决第一个问题,我们已经使用八个摄像机进行了两次独立的实验室测试,测量了MEO标准流星摄像机的线性响应。我们凭经验确定的线性校正对于在低相机强度水平下执行准确的测光至关重要。关于第二点,我们已经计算出EX带通中参考星的合成星等。这些合成幅度可以直接计算相机带通内的流星的光度通量,而无需对其光谱能量分布进行任何假设。估计单个参考星的合成量的系统不确定性约为0.20 mag,并且受参考目录中可用光谱信息的限制。这两项改进使得零点精度在经过滤波和未经滤波的摄像机观测中均精确到类似于0.05-0.10 mag,而没有证据显示系统存在问题。这些改进对于准确测量单个流星的光度质量和源质量指数至关重要。

著录项

  • 来源
    《Planetary and space science》 |2017年第9期|218-224|共7页
  • 作者单位

    NASA, Qualis Corp Jacobs ESSSA Grp, Meteoroid Environm Off, Marshall Space Flight Ctr, Huntsville, AL 35812 USA;

    NASA, ERC Jacobs ESSSA Grp, Meteoroid Environm Off, Marshall Space Flight Ctr, Huntsville, AL 35812 USA;

    NASA, Meteoroid Environm Off, Marshall Space Flight Ctr, Huntsville, AL 35812 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Meteoroids; Photometry; Calibration; Video;

    机译:流星;光度法;校准;视频;

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