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A THEORETICAL INVESTIGATION OF PROSPECTS FOR MODE SELECTIVE OVERTONE PHOTOCHEMISTRY (QUANTUM DYNAMICS).

机译:对模式选择性泛音光化学(量子动力学)的前景进行理论研究。

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We present several related studies which probe the energy flow dynamics of overtone initiated photochemistry using theoretical methods. The nature of the classical dynamics for two model isomerization systems has been investigated with an assumed initially localized excitation to a high overtone vibration state of a bond oscillator. For these systems, the classical equations of motion are propagated and analyzed using nonlinear resonance theory. We find energy flows along resonance enhanced pathways leading to nonstatistical chemical reactivity. There exist, however, profound perturbations for both models due to nonresonant energy flow. It is concluded that this perturbation leads to significant complications which render mode selective photochemistry unobservable. Since most experimental investigations have been unable to identify nonstatistical behavior, these theoretical results are in agreement with the majority of previous observations. We identify therefore, the primary difficulty which prevents the observation of mode selectivity to be nonresonant energy flow.; We also investigate the nature of the excitation dynamics of the overtone excitation process itself. Completely classical descriptions for this process are highly inaccurate, showing no excitation of overtone levels. Quantum mechanically, the dynamics for excitation are allowed. The overtone excitation process is thereby identified as an example of dynamic tunneling, which is slow relative to intramolecular vibrational relaxation, resulting in completely delocalized excitations at all times. It is not accurate therefore to assume an initially localized excitation, but interpretations which make such an assumption may still be reasonable if there is no competing dynamic process such as dissociation. These delocalized excitations are very eigenstate specific, which leads to yet another hypothesis.; Multiple laser excitation, each laser tuned to a different excited eigenstate, will lead to coherent superpositions of these states, which may lead to destructive interference in chemically significant portions of coordinate space. As examples, we calculate that such a coherent multi-color (CMC) excitation can lead to long time localized bond excitations of high overtones for a polyatomic model and show that phosphorescence can be eliminated as a radiative channel for diatomic carbon monosulfide. Finally, overall implications of these separate studies on the nature of overtone photochemistry are discussed.
机译:我们提出了一些相关的研究,这些研究使用理论方法探讨了泛音引发的光化学的能流动力学。已经对两个模型异构化系统的经典动力学性质进行了研究,并假设其初始局限性激发到键振荡器的高泛音振动状态。对于这些系统,使用非线性共振理论传播和分析经典运动方程。我们发现能量沿着共振增强的路径流动,从而导致非统计化学反应。但是,由于非共振能量流,这两个模型都存在严重的扰动。结论是,这种扰动导致显着的并发症,这使得模式选择性光化学不可观察。由于大多数实验研究无法确定非统计行为,因此这些理论结果与大多数先前的观察结果一致。因此,我们确定了阻止观察模式选择性为非共振能量流的主要困难。我们还研究了泛音激励过程本身的激励动力学性质。对此过程的完全经典描述非常不准确,没有显示泛音电平的激发。从机械角度讲,激发的动力学是允许的。因此,泛音激发过程被认为是动态隧穿的一个例子,它相对于分子内的振动弛豫是缓慢的,从而始终导致完全离域的激发。因此,假设最初是局部激发是不准确的,但是,如果没有竞争性的动态过程(例如,解离),做出这种假设的解释可能仍然是合理的。这些离域的激发是非常本征态特定的,这导致了另一个假设。多个激光激发,每个激光被调谐到一个不同的激发本征态,将导致这些态的相干叠加,这可能导致对坐标空间化学重要部分的破坏性干涉。例如,我们计算出这种相干多色(CMC)激发可以导致多原子模型长时间出现高泛音的局部键激发,并表明磷光可以消除为双原子一硫化碳的辐射通道。最后,讨论了这些单独研究对泛光光化学性质的整体含义。

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