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Activated chemistry in the presence of a strongly symmetrically coupled vibration

机译:存在强烈对称耦合振动时的活化化学

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In the gas phase, tunneling reaction rates can be significantly enhanced if the reaction coordinate is symmetrically coupled to a harmonic oscillation, as has been emphasized by Benderskii and co-workers [Adv. Chem. Phys. 88, 1 (1994)]. This is due to the fact that the symmetric coupling leads to modulation of the barrier height. Similar effects have been observed in reactions in model condensed phase studies, as in the Hamiltonians that have been studied by Borgis and Hynes [J. Chem. Phys. 94, 3619 (1991)] and Suarez and Silbey [J. Chem. Phys. 94, 4809 (1991)]. All of these works assume that tunneling proceeds from the ground state. In this paper, we use the exponential resummation technique that we used in our recent work on the quantum Kramers problem, to study the case when there can be excitations to higher states and activated transmission over a barrier. We present a general methodology to exactly include direct coupling between the reaction coordinate and the symmetrically coupled promoting vibration and find that the rate of reactions in condensed phases is enhanced as in the case of tunneling from the ground state. This effect, however, is strongly modulated by loss of coherence induced by the condensed phase environment. (C) 1998 American Institute of Physics. [References: 40]
机译:如Benderskii及其同事所强调的,在气相中,如果反应坐标对称地耦合到谐波振荡,则可以显着提高隧穿反应速率。化学物理88,1(1994)]。这是由于以下事实:对称耦合导致对势垒高度的调节。在模型凝聚相研究中,在反应中也观察到了类似的效果,就像由Borgis和Hynes研究的哈密顿量[J.化学物理94,3619(1991)]和Suarez and Silbey [J.化学物理94,4809(1991)]。所有这些工作都假定隧道工作是从基态开始的。在本文中,我们使用在我们最近的量子Kramers问题研究中使用的指数求和技术,研究了可以激发更高状态并激活势垒传输的情况。我们提出了一种一般方法,可以精确地包括反应坐标与对称耦合促进振动之间的直接耦合,并且发现在凝结相中的反应速率与从基态隧穿的情况一样得到了增强。但是,由于冷凝相环境引起的相干性损失,强烈地调节了这种效果。 (C)1998美国物理研究所。 [参考:40]

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