首页> 外文期刊>The Journal of Chemical Physics >Anomalously slow intramolecular vibrational redistribution in the acetylene (X)over-tilde (1)Sigma(+)(g) state above 10 000 cm(-)1 of internal energy
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Anomalously slow intramolecular vibrational redistribution in the acetylene (X)over-tilde (1)Sigma(+)(g) state above 10 000 cm(-)1 of internal energy

机译:内在能量超过10000 cm(-)1的乙炔(X)波浪线(1)Sigma(+)(g)状态下异常缓慢的分子内振动重新分布

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We have identified, in dispersed fluorescence spectra of acetylene (A) over tilde (1)A(u) --> (X) over tilde (1)Sigma(g)(+) emission, a series of bright states between 10 000 and 15 000 cm(-1) of internal energy which display anomalously slow intramolecular vibrational redistribution. That is, these bright states display virtually no fractionation at internal energies at which the majority of other observed bright states are fractionated over several hundred cm(-1) in a complicated fashion. The anomalous bright states are distinguished from the other nearly isoenergetic bright states only by the way in which the vibrational excitation is distributed among the CC stretch and trans bend modes; specifically, the anomalous bright states have relatively low excitation in the trans bend mode (upsilon(4)less than or equal to 8), With the remainder of the vibrational excitation in the CC stretch mode (upsilon(2)less than or equal to 6). A refinement of the acetylene global effective Hamiltonian permits detailed insight into the mechanism of the anomalously slow intramolecular vibrational redistribution, and reveals that the relatively simple fractionation patterns of these bright states can be adequately described in terms of a system of 4 interacting zero-order states which are coupled by Darling-Dennison bending resonances, vibrational I-resonance, and an anharmonic "3,245" resonance. The refined effective Hamiltonian also permits the assignment of similar, minimally perturbed bright states up to at least 17 500 cm(-1) of internal energy. (C) 1998 American Institute of Physics. [S0021-9606(98)01234-3]. [References: 29]
机译:我们已经确定了在乙炔(A)在波浪线(1)A(u)->(X)在波浪线(1)Sigma(g)(+)的分散荧光光谱中,一系列亮态在10000之间和15000 cm(-1)的内部能量显示异常缓慢的分子内振动重新分布。也就是说,这些亮态在内部能量上几乎没有显示出分数,在该能量下,大多数其他观察到的亮态都以复杂的方式在数百cm(-1)上被分数。异常亮态与其他几乎等能量的亮态仅通过在CC拉伸和跨折弯模式之间分配振动激励的方式来区分。具体而言,反常亮态在反弯弯曲模式下具有相对较低的激发(upsilon(4)小于或等于8),而其余振动激发在CC拉伸模式下(upsilon(2)小于或等于8) 6)。乙炔全局有效哈密顿量的细化允许深入了解异常缓慢的分子内振动重新分布的机理,并揭示可以用4个相互作用的零级态系统充分描述这些亮态的相对简单的分馏模式它们通过Darling-Dennison弯曲共振,振动I共振和非谐“ 3,245”共振耦合在一起。精炼的有效哈密顿量还允许分配相似的,扰动最小的亮态,其内部能量至少为17 500 cm(-1)。 (C)1998美国物理研究所。 [S0021-9606(98)01234-3]。 [参考:29]

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