首页> 外文期刊>The Journal of Chemical Physics >LASER-INDUCED FLUORESCENCE SPECTROSCOPY OF AR2HF AT NU(HF)=3 - AN EXAMINATION OF THREE-BODY FORCES
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LASER-INDUCED FLUORESCENCE SPECTROSCOPY OF AR2HF AT NU(HF)=3 - AN EXAMINATION OF THREE-BODY FORCES

机译:NU(HF)= 3时AR2HF的激光诱导荧光光谱-一种三体力的检验

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The vibrational spectrum of Ar2HF in the 11 320-11 430 cm(-1) region is recorded by intracavity laser-induced fluorescence. The intramolecular vibrational state, Sigma(0), in combination with the intermolecular vibrations, assigned as Pi(in-plane), Pi(out-of-plane) and Sigma(1), of the complex have been observed. The Sigma(0) state correlates adiabatically with j = 0 of HF (upsilon = 3); the Pi(in-plane), Pi(out-of-plane), and Sigma(1) states correlate adiabatically with j = 1 of HF (upsilon = 3), respectively. We have determined the vibrational band origins (and rotational constants) of nu(0) = 11 323.784 cm(-1) (A = 0.120 15, B = 0.058 30, C = 0.038 94 cm(-1)), nu(0) = 11 387.730 cm(-1) (A = 0.122 68, B = 0.057 05, C = 0.038 42 cm(-1)), nu(0) = 11 426.815 cm(-1) (A = 0.120 27, B = 0.058 15, C = 0.038 71 cm(-1)) and nu(0) = 11 427.400 cm(-1) (A = 0.120 26, B = 0.058 15, C = 0.038 71 cm(-1)) for Sigma(0), Pi(in-plane), Pi(out-of-plane), and Sigma(1) states, respectively. The vibrational red shift for the pure HF stretch from upsilon(HF) = 0-3 is 49.023 cm(-1). The in-plane and out-of-plant bending frequencies are 63.947 and 103.031 cm(-1). The Sigma(1) state, which may be viewed as the Ar2FH structure is located 103.616 cm(-1) above the Ar2HF Sigma(0) state. The spectral line shapes appear to be well fitted by a Doppler profile with FWHM approximate to 120 MHz, indicating that the predissociation linewidths have a Lorentzian component of less than 10 MHz. These results are compared with those of Farrell and Nesbitt [J. Chem. Phys. 105, 9421 (1996)] for upsilon(HF) = 1. The present experimental data set is also compared with the quantitative predictions by Ernesti and Hutson [Phys. Rev. A 51, 239 (1995)] and therefore serves as a rigorous test for modeling nonadditivity of intermolecular interactions and their vibrational dependence. These comparisons show that the vibrational dependence of three-body terms is accurate in the region of potential minimum. For configurations far from the energy minimum, appreciable discrepancies appear to exist. The vibrational variation of the Pi(in-plane) bending frequency is relatively poorly predicted, which strongly suggests the inadequacy in the present modeling of the intriguing nonadditive forces for this prototypical system. (C) 1997 American Institute of Physics. [References: 29]
机译:通过腔内激光诱导的荧光记录Ar2HF在11320-11430cm(-1)区域的振动光谱。已经观察到配合物的分子内振动状态Sigma(0)与分子间振动相结合,分别指定为Pi(平面内),Pi(平面外)和Sigma(1)。 Sigma(0)状态与HF的j = 0绝热相关(upsilon = 3); Pi(平面内),Pi(平面外)和Sigma(1)状态分别与j等于1的HF绝热相关(upsilon = 3)。我们确定了nu(0)= 11323.784 cm(-1)(A = 0.120 15,B = 0.058 30,C = 0.038 94 cm(-1))的振动带起源(和旋转常数),nu(0 )= 11 387.730 cm(-1)(A = 0.122 68,B = 0.057 05,C = 0.038 42 cm(-1)),nu(0)= 11426.815 cm(-1)(A = 0.120 27,B = Sigma的= 0.058 15,C = 0.038 71 cm(-1))和nu(0)= 11427.400 cm(-1)(A = 0.120 26,B = 0.058 15,C = 0.038 71 cm(-1)) (0),Pi(平面内),Pi(平面外)和Sigma(1)状态。 upsilon(HF)= 0-3的纯HF拉伸的振动红移为49.023 cm(-1)。平面内和植物外弯曲频率为63.947和103.031 cm(-1)。可以视为Ar2FH结构的Sigma(1)状态位于Ar2HF Sigma(0)状态上方103.616 cm(-1)。频谱线形状似乎由FWHM约为120 MHz的多普勒轮廓很好地拟合,表明预离解线宽的洛伦兹分量小于10 MHz。将这些结果与Farrell和Nesbitt的结果进行比较[J.化学物理105,9421(1996)]中的upsilon(HF)=1。本实验数据集也与Ernesti和Hutson的定量预测[Phys。 Rev. A 51,239(1995)],因此可作为对分子间相互作用的非可加性及其振动依赖性进行建模的严格测试。这些比较表明,三体项的振动相关性在最小电位区域内是准确的。对于远离能量最小值的配置,似乎存在明显的差异。 Pi(平面内)弯曲频率的振动变化相对较差地预测,这强烈暗示了在该模型系统的吸引人的非加性力的当前建模中的不足。 (C)1997美国物理研究所。 [参考:29]

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