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首页> 外文期刊>The Journal of Chemical Physics >On the derivation of semiclassical expressions for quantum reaction rate constants in multidimensional systems
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On the derivation of semiclassical expressions for quantum reaction rate constants in multidimensional systems

机译:关于多维系统中量子反应速率常数的半经典表达式的推导

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摘要

Expressions for reaction rate constants in multidimensional chemical systems are derived by applying semiclassical approximation to the quantum path integrals of the ImF formulation of reaction rate theory. First, the transverse degrees of freedom orthogonal to the reaction coordinate are treated within the steepest descent approximation, after which the semiclassical approximation is applied to the remaining reaction coordinate. Thus derived, the semiclassical expressions account for the multidimensional nature of quantum effects and accurately incorporate nuclear quantum effects such as multidimensional tunneling and zero point energies. The obtained expressions are applicable in the broad temperature range from the deep tunneling to high-temperature regimes. The present paper provides derivation of the semiclassical instanton expressions proposed by Kryvohuz [J. Chem. Phys. 134, 114103 (2011)]10.1063/1.3565425.
机译:多维化学系统中反应速率常数的表达式是通过将半经典近似应用于反应速率理论的ImF公式的量子路径积分而得出的。首先,在最陡下降近似中处理与反应坐标正交的横向自由度,然后将半经典近似应用于剩余的反应坐标。这样得出的半经典表达式解释了量子效应的多维性质,并准确地合并了诸如多维隧穿和零点能量之类的核量子效应。所获得的表达式适用于从深隧穿到高温状态的广泛温度范围。本文提供了由Kryvohuz提出的半经典实例化表达式的推导[J.化学物理134,114103(2011)] 10.1063 / 1.3565425。

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