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Measurements of the Surface Brightness of the Earthshine with Applications to Calibrate Lunar Flashes

机译:校准月牙闪烁的应用程序测量大地表面的亮度

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We have used the large database of photometric observations of the bright and dark portions of the face of the Moon from the Earthshine Project at Big Bear Solar Observatory to determine the surface brightness of the earthshine and its variations. Our purpose is to make these observations appropriate for the calibration of lunar flashes according to their magnitude. We have evaluated the daily, seasonal, and annual changes in magnitude for our entire data set and have also calibrated the surface brightness of the entire lunar geography for several lunar phases by means of the observation of lunar eclipses. We find variations between +12 and +17 mV arcsec-2 with hourly changes upward of the order 0.25 mV arcsec-2, which are uniquely due to the terrestrial meteorology. This rapid change in the terrestrial flux reaching the Moon is usually neglected when calibrating the magnitude of lunar impact events. We justify this using earthshine observations to determine the brightness for the day, time, and selenographic location of a given event in order to improve the accuracy of its brightness calibration up to 0.25 mag.
机译:我们使用了大熊太阳天文台Earthshine项目对月球表面明暗部分进行光度学观测的大型数据库来确定Earthshine的表面亮度及其变化。我们的目的是根据这些观测值的大小使这些观测值适合于月球闪光的校准。我们已经评估了整个数据集的每日,季节性和年度幅度变化,并且还通过观测月食来校准了多个月相的整个月球地理的表面亮度。我们发现+12至+17 mV arcsec-2之间的变化,且每小时的变化向上为0.25 mV arcsec-2量级,这是由于地面气象学所致。校准月球撞击事件的大小时,通常忽略了到达月球的地面通量的这种快速变化。我们使用大地观测来确定给定事件的日期,时间和硒定位置的亮度,以此来证明其合理性,以便将其亮度校准的准确性提高至0.25 mag。

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