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首页> 外文期刊>The Journal of Chemical Physics >Two-photon photodissociation of NO through Rydberg levels in the 265-278 nm region: Spectra and photofragment angular distributions
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Two-photon photodissociation of NO through Rydberg levels in the 265-278 nm region: Spectra and photofragment angular distributions

机译:NO在265-278 nm范围内通过Rydberg能级进行双光子光解离:光谱和光碎裂角分布

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The spectroscopy and dynamics of the NO photodissociation through Rydberg levels near 74 000 cm~(-1) have been investigated following two-photon excitation. The 6d pi~- (v=1) and 5 s sigma(v=3) levels overlap near 74 070 cm~(-1). Assignment of the rotational transitions for these levels has been adided by the use of the photoproduct anglular distributions measured using product imaging techniues. Product imaging was also used to investigate the 8d pi~-(v=1) and 5ssigma(v=2) regions assigned by previous investigators. In all cases, the major products were N(~2D)+O(~3P). The angular distributions vary strongly with rotational transition and with the assumed intermediate in the two-photon excitation scheme and can, for the most part, be predicted by calculation. They demonstrate that, for the Rydberg levels examined, the major contribution to the two-photon line strength is a II intermediate, likely the C ~2II state, with less than a 30% amplitude contribution from either a SIGMA or DELTA intermediate.
机译:在双光子激发后,研究了通过近74 000 cm〜(-1)的里德堡能级分解的NO的光谱和动力学。 6d pi〜-(v = 1)和5 s sigma(v = 3)的水平在74070 cm〜(-1)附近重叠。通过使用通过产品成像技术测量的光产品角度分布,可以对这些级别的旋转过渡进行分配。产品成像还用于研究先前研究人员分配的8d pi-(v = 1)和5ssigma(v = 2)区域。在所有情况下,主要产物为N(〜2D)+ O(〜3P)。角分布随旋转跃迁和双光子激发方案中的假定中间值而变化很大,并且在大多数情况下可以通过计算来预测。他们证明,对于所检测的里德堡能级,对双光子线强度的主要贡献是II中间物,可能是C〜2II状态,而SIGMA或DELTA中间物的振幅贡献不到30%。

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