Institut UTINAM UMR CNRS 6213, Université de Franche-Comté, Besançon, France.
J Chem Phys. 2013 Apr 28;138(16):164117. doi: 10.1063/1.4802056.
Absorption coefficients in the bending ν2 and stretching 2ν3 bands of OCS perturbed by He at high pressures up to 300 atm have been measured and analyzed in the impact-approximation region by two theoretical models accounting for the line mixing. In the first approach, the frequency-independent relaxation operator is treated semi-classically [N. N. Filippov and M. V. Tonkov, J. Quant. Spectrosc. Radiat. Transf. 50, 111 (1993)] with adiabatic corrections. To characterize the strength of collisions and the line mixing efficiency a single parameter G is used and its value is estimated from the intermolecular interaction potential. The adiabaticity of collisions and the corresponding correction to the collisional cross sections amplitude are taken into account by two other parameters ν(corr) and σ deduced from fitting to experimental line widths. In the second approach, the symmetrized non-Markovian relaxation operator of Energy-Corrected Sudden type developed for rototranslational Raman spectra of linear rotators [J. Buldyreva and L. Bonamy, Phys. Rev. A 60, 370 (1999)] and satisfying all the basic properties (in particular, the detailed balance relation and the double-sided sum rules) is adapted to absorption spectra for the first time. Its off-diagonal elements are determined via the common adiabaticity factor and the basic transition rates whose parameters are adjusted on experimental values of isolated line widths. Both models provide a very consistent description of OCS-He 2ν3 and ν2 band intensities up to the maximal experimentally studied pressure, with a slightly more realistic picturing of the inter-branch exchange by the second approach.
在高达 300 大气压的高压下,通过两种理论模型在冲击近似区域测量和分析了 OCS 的弯曲 ν2 和伸展 2ν3 带的吸收系数,这两种模型都考虑了线混合。在第一种方法中,频率独立的弛豫算符被半经典地处理[ N. N. Filippov 和 M. V. Tonkov,J. Quant. Spectrosc. Radiat. Transf. 50, 111 (1993)],并考虑了绝热修正。为了描述碰撞的强度和线混合效率,使用了一个单一的参数 G,并从分子间相互作用势中估计其值。通过另外两个参数 ν(corr)和 σ来考虑碰撞的绝热性和对碰撞截面幅度的相应修正,这两个参数是从实验线宽拟合中得出的。在第二种方法中,首次将为线性转子的旋转平移拉曼光谱开发的对称非马尔可夫能量修正突发型弛豫算符[ J. Buldyreva 和 L. Bonamy,Phys. Rev. A 60, 370 (1999)]应用于吸收光谱。它的非对角元素是通过共同的绝热因子和基本跃迁速率来确定的,其参数是根据孤立线宽的实验值进行调整的。这两种模型都非常一致地描述了 OCS-He 2ν3 和 ν2 带的强度,直到实验研究的最大压力,第二种方法对支间交换的描述更现实。