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On the dynamical foundations of transition state theory: a semiclassical analysis

机译:关于过渡状态理论的动力学基础:半经典分析

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Classical (S) over bar matrix theory is applied to the description of microcanonical unimolecular rate constants in the chaotic scattering regime. If we postulate that the semiclassical treatment satisfyingly describes the relative values of the final populations when only a few product states are available, we arrive, for processes involving tight transition states (TSs), at the following conclusions: (a) there is no semiclassical transition state theory (TST), a result in agreement with previous findings by Pechukas and Miller; stricto sensus, the exact proportionality between the rate constant k(uni) (E) and the available number N-double dagger (E) of quantum states at the TS is not founded; (b) k(uni)(E) should depend rather smoothly on E, even when tunneling is negligible; and (c) TST, however, provides a very satisfying quantitative description of rate constants when N-double dagger(E) is large, which is mostly the case in practice. (C) 2004 Elsevier Inc. All rights reserved.
机译:棒矩阵上的经典(S)应用于混沌散射状态下微规范单分子速率常数的描述。如果假设只有少数产品状态可用时,半经典处理令人满意地描述了最终总体的相对值,那么对于涉及紧密过渡状态(TS)的过程,我们得出以下结论:(a)没有半经典过渡状态理论(TST),与Pechukas和Miller的先前发现相符;严格地说,在TS处的速率常数k(uni)(E)与可用的量子态数N-双匕首(E)之间没有确切的比例关系; (b)即使隧穿可忽略不计,k(uni)(E)也应相当平稳地依赖于E; (c)然而,当N-double dagger(E)大时,TST提供了非常令人满意的速率常数的定量描述,这在实践中通常是这样。 (C)2004 Elsevier Inc.保留所有权利。

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