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Influence of celestial light on lunar surface brightness determinations: Application to earthshine studies

机译:天体光对月球表面亮度测定的影响:在大地照度研究中的应用

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Aims. We consider the influence of celestial-sphere brightness on determinations of terrestrial albedo from earthshine intensity measurements. In particular, the contributions from zodiacal light and starlight are considered. Methods. Using published data for the zodiacal light (ZL) and stellar brightness distribution across the sky, we calculate the expected contribution to the sky at the position of the Moon in typical earthshine observations, and the magnitude relative to typical earthshine intensities. We derive terrestrial albedo with and without the ZL correction in order to gauge the magnitude of the effect. Results. We find that celestial-sphere surface brightness can be so large that a considerable and unacceptable error level would have an impact on half of typical earthshine-based albedo-determinations if left unaccounted for. Considering the empirical uncertainty on ZL, we show that almost all our earthshine data can be used if a sky correction is made. In real observations we find up to a 1% effect on albedo results of correcting for the celestial brightness. Conclusions. Correction for ZL and starlight brightness is essential to earthshine measurements if climate-science relevant levels of terrestrial albedo accuracy are to be achieved, something that has not yet been realized. With ZL and starlight corrections the earthshine method can potentially yield accurate terrestrial albedo values.
机译:目的我们考虑了天球亮度对从地球强度测量中确定地面反照率的影响。特别地,考虑了黄道光和星光的贡献。方法。使用已发布的黄道光(ZL)和恒星在天空中的亮度分布数据,我们可以计算出在典型的地球观测中月球位置对天空的预期贡献,以及相对于典型地球强度的幅度。我们推导出具有和不具有ZL校正的地面反照率,以评估影响的程度。结果。我们发现,天球表面的亮度可能太大,以至于如果不加以考虑,相当大且不可接受的误差水平将对典型的基于地球光的反照率测定的一半产生影响。考虑到ZL的经验不确定性,我们表明,如果进行天空校正,几乎所有的地雷数据都可以使用。在实际观察中,我们发现对天体亮度校正的反照率结果影响高达1%。结论。如果要实现与气候科学有关的地面反照率精度水平,那么对ZL和星光亮度的校正对于进行大地照度测量至关重要,而这尚未实现。通过ZL和星光校正,大地光法可能会产生准确的地面反照率值。

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