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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >The influence of nonbilinear system-bath coupling on quantum-mechanical activated rate processes
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The influence of nonbilinear system-bath coupling on quantum-mechanical activated rate processes

机译:非双线性系统-浴耦合对量子力学活化速率过程的影响

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摘要

The dependence of quantum-mechanical activated rate processes on the system-bath coupling strength was investigated in the case of a double-well nonbilinearly coupled to a harmonic bath, where the system-bath coupling is linear in the bath coordinates and nonlinear in the reaction coordinate. Such noribilinear coupling is known to give rise to a classical friction kernel which is explicitly dependent on the reaction coordinate. We show that it can also lead to quantum-mechanical barrier-crossing rates, whose dependence on the system-bath coupling strength is qualitatively different from that observed in the quantum-mechanical bilinear case and classical nonbilinear case. More specifically, it is shown that the quantum-mechanical barrier-crossing rate may monotonically increase as a function of the system-bath coupling strength, in cases where the classical barrier-crossing rate goes through a turnover, and that the rate of quantum-mechanical barrier-crossing can be lower than that of classical barrier-crossing. We show that those purely quantum-mechanical effects are of a thermodynamical, rather than dynamical, nature, and that they originate from the difference in friction between the barrier top and the reactant and product wells. Our conclusions are supported by results obtained via the CMD method, which were also found to be in very good agreement with numerically exact calculations based on the QUAPI method. (c) 2005 Elsevier B.V. All rights reserved.
机译:在双阱非双线性耦合到谐波浴的情况下,研究了量子力学活化速率过程对系统-浴耦合强度的依赖性,其中系统-浴耦合在浴坐标系中是线性的,在反应中是非线性的坐标。已知这种非线性的线性耦合产生经典的摩擦核,该摩擦核明确地取决于反应坐标。我们表明,它还可以导致量子力学屏障交叉速率,其对系统-浴耦合强度的依赖性与在量子力学双线性情况和经典非双线性情况下观察到的定性不同。更具体地说,它表明,在经典的势垒穿越率经过翻转的情况下,量子力学势垒穿越率可以随系统-浴耦合强度的变化而单调增加,并且量子势垒穿越率机械障碍穿越可低于经典障碍穿越。我们证明了那些纯粹的量子力学效应是热力学性质的,而不是动力学性质的,它们是由势垒顶部与反应物和产物阱之间的摩擦力差异引起的。通过CMD方法获得的结果支持了我们的结论,也发现该结果与基于QUAPI方法的精确数值计算非常吻合。 (c)2005 Elsevier B.V.保留所有权利。

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