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Technical Note: Time-dependent limb-darkening calibration for solar occultation instruments

机译:技术说明:用于太阳掩星仪的时间依赖性肢体变暗校准

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pstrongAbstract./strong Solar occultation has proven to be a reliable technique for the measurement of atmospheric constituents in the stratosphere. NASA's Stratospheric Aerosol and Gas Experiments (SAGE, SAGE II, and SAGE III) together have provided over 25 years of quality solar occultation data, a data record which has been an important resource for the scientific exploration of atmospheric composition and climate change. Herein, we describe an improvement to the processing of SAGE data that corrects for a previously uncorrected short-term time-dependence in the calibration function. The variability relates to the apparent rotation of the scanning track with respect to the face of the sun due to the motion of the satellite. Correcting for this effect results in a decrease in the measurement noise in the Level 1 line-of-sight optical depth measurements of approximately 40% in the middle and upper stratospheric SAGE II and III observations where it has been applied. The technique is potentially useful for any scanning solar occultation instrument and suggests further improvement for future occultation measurements if a full disk imaging system can be included./p.
机译:> >摘要。太阳掩星被证明是测量平流层大气成分的可靠技术。 NASA的平流层气溶胶和气体实验(SAGE,SAGE II和SAGE III)共同提供了超过25年的优质太阳掩星数据,该数据记录已成为科学探索大气成分和气候变化的重要资源。在这里,我们描述了SAGE数据处理的一种改进,它可以校正校准功能中以前未校正的短期时间依赖性。可变性涉及由于卫星的运动,扫描轨道相对于太阳表面的视在旋转。对此效应进行校正会导致平流层SAGE II和III中层和上层观测值(已应用该层)在1级视线光学深度测量中的测量噪声降低约40%。该技术对于任何扫描式太阳掩星仪都有潜在的实用价值,如果可以包括全盘成像系统,则可以为将来的掩星测量提出进一步的改进。

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