首页> 外文OA文献 >Vibration-rotation interactions in infrared active overtone levels of spherical top molecules; 2ν3 and 2ν4 of CH4, 2ν3 of CD4
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Vibration-rotation interactions in infrared active overtone levels of spherical top molecules; 2ν3 and 2ν4 of CH4, 2ν3 of CD4

机译:振动旋转相互作用的球形顶部分子的红外主动隆起。 CC4的CH4,233和2ν4

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摘要

The theory of the vibration-rotation lines of the first overtones of the infrared active fundamentals of tetrahedral molecules has been re-examined. Theory predicts an overtone spectrum consisting of five P, Q, and R branches of roughly comparable intensities provided that the vibrational angular momentum quantum number l is approximately a good quantum number for the complete vibration-rotation Hamiltonian. In this case the separation of the E and F2 vibrational substates of the l = 2 vibrational state must be small compared with the splittings which arise from the 2B[zeta] (P[middle dot]1) term. The band 2[nu]4 of CH4 is shown to be consistent with this approximation. If however the separation between the E and F2 vibrational substates is very large theory predicts an overtone spectrum consisting of single strong P, Q, and R branches with P and R branch spacings of approximately 2B(1 + [zeta]). These P, Q, and R lines are associated with the F2 vibrational substate, and have relative intensities much larger than the lines of the E vibrational substate. The bands 2[nu]3 of both CH4 and CD4 are shown to be accounted for by this limit.The detailed calculations exploit the spherical tensor formalism. In the first case a conventional angular momentum coupled representation, an extension of Hecht's work on the fundamental [nu]3, is used in the calculations. In the second case a new representation is introduced which formally has many of the mathematical properties of the conventional representation for an l = 1 vibrational state.The tetrahedral splittings in the vibration-rotation levels of 2[nu]3 of CD4 are appreciable, and are accounted for very well by the following constants which give the splittings throughout the spectrum: Dt = 1.1 x 10-6cm-1, F3t = -1.4 x 10-4cm-1, . The following linear combinations of effective rotational constants are obtained from the spectrum: From the P and R branches, B + B0 + 2(B[zeta]3) = 6.00 +/- 0.02 cm-1, B - B0 = -0.050 +/- 0.004 cm-1. From the Q branch, B - B0 = -0.062 +/- 0.002 cm-1. In 2[nu]3 of CH4 the tetrahedral splittings are quite small, making a quantitative fit more difficult. However, the best fit is obtained with Dt = 4.5 x 10-6cm-1, F3t = -1.25 x 10-4cm-1, and [gamma]3t = -5.0 x 10-4cm-1. Also, from the P and R branches, B + B0 + 2(B[zeta]3) = 10.76 +/- 0.02 cm-1, B - B0 = -0.063 +/- 0.004 cm-1; from the Q branch, B - B0 = -0.058 +/- 0.002 cm-1. The spectrum of 2[nu]4 of CH4 is extremely complex as a result of the tetrahedral splittings and the overlapping of the five P, Q, and R branches. It is not possible to make definite assignments for the observed lines at this time.
机译:四面体分子的红外活性基本面的第一色彩的振动旋转线的理论已被重新检查。理论预测由五个P,Q的泛音光谱,和提供大致相当强度的ř分支所述振动角动量量子数l为大约为完整振动旋转哈密顿良好的量子数。在这种情况下,E的分离和L = 2振动状态的振动F2必须子状态与来自2B的ζ(P [中间点] 1)术语,其出现的劈裂相比是小的。频带2 [NU] CH4的4被示出为与此近似一致。然而,如果E和F2振动子状态之间的分离是非常大的理论预测的泛音光谱由单一的强P,Q,并以P - [R分支和大约2B(1 +的ζ)的R分支间距。这些P,Q,和R线与F2振动子状态相关联,并且具有相对强度比E振动子状态的线大得多。频带2 [NU]二者CH4和CD4的3被示出为占由本limit.The详细的计算利用所述球形张量形式主义。在第一种情况下的传统角动量耦合表示,赫克特的工作对基本[NU] 3的延伸部,在计算中被使用。在第二种情况下的新表示引入形式上具有许多与常规表示的数学属性的用于L = 1的振动state.The四面体分裂中的振动旋转水平2 [NU] CD4 3是明显的,并且通过下面的常量,其整个频谱得到分裂被占非常好:DT = 1.1×10-6cm-1,F3T = -1.4 X 10-4cm-1,。的有效转动常数下面的线性组合从光谱得到:从P和R分支,B + B0 + 2(B的ζ3)= 6.00 +/- 0.02 -1,B - B0 = -0.050 + / - 0.004厘米-1。从Q分支,B - B0 = -0.062 +/-0.002厘米-1。在CH4的2 [NU] 3四面体分裂是相当小的,使得定量配合更加困难。然而,与申获得的最佳拟合= 4.5×10-6cm-1,F3T = -1.25 X 10-4cm-1,和γ=3吨-5.0 X 10-4cm-1。此外,从P和R分支,B + B0 + 2(B的ζ3)= 10.76 +/- 0.02 -1,B - B0 = -0.063 +/-0.004厘米-1;从Q分支,B - B0 = -0.058 +/-0.002厘米-1。的2频谱[NU] CH4的图4是作为四面体分裂的结果,五个P,Q的重叠,和R分支极为复杂。这是不可能作出明确的分配在这个时候观察到的线路。

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    Kenneth Fox;

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  • 年度 1962
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  • 原文格式 PDF
  • 正文语种 en_us
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