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机构地区:[1]中国科学院安徽光学精密机械研究所环境光谱学研究室,安徽合肥230031
出 处:《量子电子学报》2010年第6期650-654,共5页Chinese Journal of Quantum Electronics
基 金:中国科学院知识创新工程重要方向项目(KGCX2-YW-418-3)
摘 要:空间外差光谱(Spatial heterodyne spectroscopy,SHS)技术是一种新型的光谱分析技术。基于空间外差光谱仪的基本原理和特点,研究了实际测量中干涉仪两光臂不平衡造成的畸变干涉图的修正方法,模拟计算了干涉仪两光臂不平衡时干涉图的强度变化,并对其进行了模拟修正,修正后的干涉图与理想的SHS干涉图一致性较好。修正方法主要是测量干涉图的非调制项(即未发生干涉时单个光臂的光强),以及在干涉图数据处理中引入一个修正因子。通过对干涉仪两臂不平衡的修正,可以有效地提高干涉图反演光谱的精度。Spatial heterodyne spectroscopy (SHS) is a new spectrometric technique. Based on the basic concept and characteristics of spatial heterodyne spectrometer, an interferogram correction method is presented for the signal from both interferometer arms. The interferograms from unequal arms of interferometer were calculated and corrected by use of the presented method, and the corrected interferogram is very close to the ideal SHS interferogram. The main idea is to measure the nonmodulated term (the signal intensity of each arm) of the interferogram and introduce a correcting factor in the interferogram data processing. The spectral inversion accuracy of spatial heterodyne spectrometer can be effectively improved by correcting the interferogram aberration caused by unequal interferometer arms.
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