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The Binary Collision-Induced Second Overtone Band of Gaseous Hydrogen: Modelling and Laboratory Measurements

机译:气态氢的二元碰撞诱导的第二泛音带:建模和实验室测量

摘要

Collision-induced absorption (CIA) is the major source of the infrared opacity of dense planetary atmospheres which are composed of nonpolar molecules. Knowledge of CIA absorption spectra of H2-H2 pairs is important for modelling the atmospheres of planets and cold stars that are mainly composed of hydrogen. The spectra of hydrogen in the region of the second overtone at 0.8 microns have been recorded at temperatures of 298 and 77.5 K for gas densities ranging from 100 to 800 amagats. By extrapolation to zero density of the absorption coefficient measured every 10 cm(exp -1) in the spectral range from 11100 to 13800 cm(exp -1), we have determined the binary absorption coefficient. These extrapolated measurements are compared with calculations based on a model that was obtained by using simple computer codes and lineshape profiles. In view of the very weak absorption of the second overtone band, we find the agreement between results of the model and experiment to be reasonable.
机译:碰撞诱导吸收(CIA)是由非极性分子组成的密集行星大气的红外不透明性的主要来源。了解H2-H2对的CIA吸收光谱对于建模主要由氢组成的行星和冷星大气非常重要。在298和77.5 K的温度下,气体密度范围为100至800阿马特,记录了第二个泛音区域在0.8微米处的氢光谱。通过外推到11100到13800 cm(exp -1)的光谱范围内每10 cm(exp -1)测得的吸收系数的零密度,我们确定了二元吸收系数。这些外推的测量值与基于使用简单计算机代码和线形轮廓获得的模型的计算结果进行比较。鉴于第二泛音带的吸收很弱,我们发现模型结果与实验之间的一致性是合理的。

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