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首页> 外文期刊>Applied optics >INFRARED COLLISION-INDUCED ABSORPTION BY N-2 NEAR 4.3 MU-M FOR ATMOSPHERIC APPLICATIONS - MEASUREMENTS AND EMPIRICAL MODELING
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INFRARED COLLISION-INDUCED ABSORPTION BY N-2 NEAR 4.3 MU-M FOR ATMOSPHERIC APPLICATIONS - MEASUREMENTS AND EMPIRICAL MODELING

机译:大气应用中N-2在4.3 MU-M附近的红外碰撞诱导吸收-测量和经验建模

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摘要

Accurate measurements of collision-induced absorption by pure nitrogen in the fundamental band near 4.3 mu m have been made in the 0-10 atm and 230-300 K pressure and temperature ranges, respectively. A Fourier-transform spectrometer was used with a resolution of 0.5 cm(-1). The current measurements, which agree well with previous ones but are more precise, reveal that weak features are superimposed on the broad N-2 continuum. These features have negligible temperature dependence, and their origin is not clear at the present time. Available experimental data in the 190-300 K temperature range have been used to build a simple empirical model that is suitable for use to compute atmospheric N-2 absorption. Tests indicate that this model is accurate unlike the estimates produced by widely used atmospheric transmission codes. (C) 1996 Optical Society of America [References: 32]
机译:分别在0-10个大气压和230-300 K的压力和温度范围内,分别精确地测量了在4.3μm附近基带中纯氮的碰撞诱导吸收。使用傅立叶变换光谱仪,分辨率为0.5 cm(-1)。当前的测量结果与先前的测量结果非常吻合,但更为精确,显示出较弱的特征叠加在宽广的N-2连续体上。这些特征对温度的依赖性可以忽略不计,目前它们的来源尚不清楚。 190-300 K温度范围内的可用实验数据已用于建立简单的经验模型,适用于计算大气中N-2的吸收。测试表明,与广泛使用的大气传输代码所产生的估计不同,该模型是准确的。 (C)1996年美国眼镜学会[参考文献:32]

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