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OZONE ABSORPTION SPECTROSCOPY IN SEARCH OF LOW-LYING ELECTRONIC STATES

机译:低层电子态的臭氧吸收光谱

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A spectrometer capable of detecting ozone absorption features 9 orders of magnitude weaker than the Hartley band has been employed to investigate the molecule's near-infrared absorption spectrum. At this sensitivity a wealth of information on the low-lying electronically excited states often believed to play a role in atmospheric chemistry is available in the form of vibrational and rotational structure. We have analyzed these spectra using a combination of digital filtering and isotope substitution and find evidence for three electronically excited states below 1.5 eV. The lowest of these states is metastable, bound by similar to 0.1 eV and probably the (3)A(2) rather than the B-3(2) state. Its adiabatic electronic energy is 1.24 +/- 0.01 eV, slightly above the dissociation energy of the ground state. Two higher states, at 1.29 +/- 0.03 and 1.48 +/- 0.03 eV, are identified as the B-3(2) and the B-3(1), respectively. Combined with other recent theoretical and experimental data on the low-lying electronic states of ozone, these results imply that these are, in fact, the lowest three excited states; that is, there are no electronically excited states of ozone lying below the energy of O(P-3) + O-2((3) Sigma(-), upsilon = 0). Some of the implications for atmospheric chemistry are considered. [References: 45]
机译:已经使用能够检测臭氧吸收特征的光谱仪比哈特利谱带弱9个数量级来研究分子的近红外吸收光谱。在这种敏感性下,可以以振动和旋转结构的形式获得有关通常被认为在大气化学中起作用的低电子激发态的大量信息。我们使用数字滤波和同位素取代相结合的方法对这些光谱进行了分析,并找到了低于1.5 eV的三种电子激发态的证据。这些状态中的最低状态是亚稳态的,受近似于0.1 eV的约束,可能是(3)A(2)而不是B-3(2)状态。其绝热电子能量为1.24 +/- 0.01 eV,略高于基态的解离能。 B-3(2)和B-3(1)分别表示为1.29 +/- 0.03和1.48 +/- 0.03 eV的两个较高状态。结合其他有关低位臭氧电子态的最新理论和实验数据,这些结果表明,它们实际上是最低的三个激发态。也就是说,没有低于O(P-3)+ O-2((3)Sigma(-),upsilon = 0)能量的臭氧电子激发态。考虑了对大气化学的一些影响。 [参考:45]

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