首页> 外文期刊>The Journal of Chemical Physics >HIGH RESOLUTION SPECTROSCOPY OF THE (HEBR2)-BR-79 VAN DER WAALS MOLECULE - AN EXPERIMENTAL AND THEORETICAL STUDY
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HIGH RESOLUTION SPECTROSCOPY OF THE (HEBR2)-BR-79 VAN DER WAALS MOLECULE - AN EXPERIMENTAL AND THEORETICAL STUDY

机译:(HEBR2)-BR-79范德华分子的高分辨率光谱-实验和理论研究

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The structure, dissociation dynamics, and intermolecular potential energy surfaces of the (HeBr2)-Br-79 van der Waals molecule have been studied using high resolution, two color, pump-probe laser induced fluorescence spectroscopy and three dimensional quantum mechanical calculations. A conical nozzle produces higher centerline cluster densities;than a standard nozzle, and allows data collection further downstream from the nozzle. This yields improved signal to noise ratios and lower Doppler widths. (HeBr2)-Br-79 is found to have a T-shaped average geometry with He to Br-2 center-of-mass distances of 3.98 Angstrom and 4.11 Angstrom for the X and B states, respectively, somewhat longer than previously reported. Spectra were also obtained for excitation to excited bending levels of the van der Waals coordinate. However, these spectra have yet to be rotationally assigned. Vibrational predissociation line widths for the B state of (HeBr2)-Br-79 have been measured for three new-vibrational levels and range from 0.036 cm(-1) for, nu' = 8 to 0.062 cm(-1) for B, nu' = 12. These values are somewhat larger than was expected based on previous HeBr2 linewidth measurements for higher vibrational levels. Forms for the potential energy surface that have previously been used to simulate the spectra of HeCl2 have been applied to the HeBr2 data. For the HeBr2 X state, two potentials are tested. First, a slightly anisotropic, one center Morse-Spline-van der Waals potential with angle dependent parameters is used. Second a much more anisotropic potential obtained from ab initio calculations is tested. The more anisotropic potential produces a significantly better fit to the data. The B state potential is constructed using Morse atom-atom potentials for the short range part of the He-Br interaction. This simple potential is sufficient to fit the main excitation band, but does not yield a fit to spectra involving vibrationally excited van der Waals modes. (C) 1996 American Institute of Physics. [References: 52]
机译:(HeBr2)-Br-79 van der Waals分子的结构,解离动力学和分子间势能表面已使用高分辨率,两色,泵浦探针激光诱导的荧光光谱和三维量子力学计算进行了研究。锥形喷嘴比标准喷嘴产生更高的中心线簇密度,并允许在喷嘴下游进一步收集数据。这产生了改善的信噪比和较低的多普勒宽度。发现(HeBr2)-Br-79具有T形平均几何形状,对于X和B态,He到Br-2的质心距离分别为3.98埃和4.11埃,比以前报道的要长一些。还获得了用于激发范德华坐标的激发弯曲能级的光谱。但是,这些光谱尚未旋转分配。已针对三个新的振动水平测量了(HeBr2)-Br-79 B状态的振动预离解线宽度,对于B,nu'= 8至0.062 cm(-1),振动范围为0.036 cm(-1), nu'=12。这些值要比以前的HeBr2线宽测量值更高的振动水平所期望的值大一些。以前用于模拟HeCl2光谱的势能面形式已应用于HeBr2数据。对于HeBr2 X状态,测试了两个电势。首先,使用具有角度依赖参数的稍微各向异性的一个中心莫尔斯样条曲线范德华势。其次,测试了从头算得到的各向异性势。各向异性的可能性越大,则对数据的拟合度就越好。在He-Br相互作用的短程部分中,使用莫尔斯原子-原子电势构建B状态电势。这个简单的电势足以适合主激发带,但不能适应涉及振动激发范德华模式的光谱。 (C)1996年美国物理研究所。 [参考:52]

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