Literature DB >> 29056765

Improving Photometric Calibration of Meteor Video Camera Systems.

Steven Ehlert1, Aaron Kingery2, Robert Suggs3.   

Abstract

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 band pass without requiring any assumptions of its spectral energy distribution. Systematic uncertainties in the synthetic magnitudes of individual reference stars are estimated at ∼ 0.20 mag, and are limited by the available spectral information in the reference catalogs. These two improvements allow for zero-points accurate 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.

Keywords:  Calibration; Meteoroids; Photometry; Video

Year:  2017        PMID: 29056765      PMCID: PMC5645794          DOI: 10.1016/j.pss.2017.03.005

Source DB:  PubMed          Journal:  Planet Space Sci        ISSN: 0032-0633            Impact factor:   2.030


  2 in total

1.  Determination of the meteor limiting magnitude.

Authors:  A Kingery; R C Blaauw
Journal:  Planet Space Sci       Date:  2017-03-16       Impact factor: 2.030

2.  Possible predictive formulas for quantitative and time-based estimation of muscle strength during motion.

Authors:  Umi Matsumura; Ayana Kai; Miku Numata; Yeonghee Lee; Shimpei Yamamoto; Toshiya Tsurusaki
Journal:  J Phys Ther Sci       Date:  2020-01-22
  2 in total

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