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首页> 外文期刊>Optics and Spectroscopy >Calculation and Analytical Representation of Self-Pressure and Air Pressure Broadening Coefficients of Ozone Spectral Lines
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Calculation and Analytical Representation of Self-Pressure and Air Pressure Broadening Coefficients of Ozone Spectral Lines

机译:臭氧谱线自压和气压增宽系数的计算与分析表示

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The coefficients gamma of broadening by self-pressure, and pressure of nitrogen, oxygen, and air are calculated for absorption lines of the rotational band and for the v_(2) band of the ozone molecule for temperatures 296, 252, and 212 K. The calculations are performed by the semiclassical method using rectilinear and exact trajectories for interacting molecules. It is shown that the experimental data obtained for the two bands at T velence 296 K can be reconstructed better using different isotropic intermolecular interaction potentials. The experimental and calculated broadening coefficients of ozone absorption lines for the rotational band and for the v_(2) and v_(1) + v_(3) vibrational bands were used to determine the parameters of an analytical model, which permits one to calculate gamma in a wide range of rotational quantum numbers, 0 <= J <= 45, 0 <= K_(a) <= 20, and temperatures of 200-296 K.
机译:针对温度296、252和212 K,针对旋转带的吸收线和臭氧分子的v_(2)带,计算了自压力导致的增宽系数gamma和氮,氧和空气的压力。通过半经典方法,使用直线和精确的轨迹相互作用分子来进行计算。结果表明,使用不同的各向同性分子间相互作用势能更好地重建在T velence 296 K的两个波段获得的实验数据。实验和计算得出的臭氧吸收谱线的旋转带以及v_(2)和v_(1)+ v_(3)振动带的扩宽系数用于确定分析模型的参数,从而可以计算出伽马在很宽的旋转量子数范围内,0 <= J <= 45,0 <= K_(a)<= 20,温度为200-296K。

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