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首页> 外文期刊>The Journal of Chemical Physics >A semiclassical approach to intense-field above-threshold dissociation in the long wavelength limit. II. Conservation principles and coherence in surface hopping
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A semiclassical approach to intense-field above-threshold dissociation in the long wavelength limit. II. Conservation principles and coherence in surface hopping

机译:在长波长范围内进行强场阈值以上解离的半经典方法。二。表面跳变的守恒原理和一致性

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This paper is a companion to our recently published semiclassical formalism for treating time-dependent Hamiltonians [J. Chem. Phys, 105, 4094 (1996)], which was applied to study the dissociation of diatomic ions in intense laser fields. Here two fundamental issues concerning this formalism are discussed in depth: conservation principles and coherence. For time-dependent Hamiltonians, the conservation principle to apply during a trajectory hop depends upon the physical origin of the electronic transition, with total energy conservation and nuclear momentum conservation representing the two limiting cases. It is shown that a]applying an inappropriate scheme leads to unphysical features in the kinetic energy of the dissociation products. A method is introduced that smoothly bridges the two limiting cases and applies the physically justified conservation scheme at all times. It is also shown that the semiclassical formalism can predict erroneous results if the electronic amplitudes for well-separated hops are added coherently. This is a fundamental problem with the formalism which leads to unphysical results if left unattended. Alternative schemes are introduced for dealing with this problem and their accuracies are assessed. Generalization of the well-known Landau-Zener formula to the time-dependent Hamiltonian case is derived, which allows one to significantly decrease the computational overhead involved with the numerical implementation of the semiclassical method. Finally, we show that in strong-field molecular dissociation a trajectory can ''surf" a moving avoided crossing. In this case the hopping probability is a sensitive function of the interference between two closely spaced avoided crossing regions. (C) 1998 American Institute of Physics. [References: 24]
机译:本文是我们最近发表的用于治疗时间依赖型哈密顿主义者的半古典形式主义的伴侣[J.化学Phys,105,4094(1996)],其用于研究强激光场中双原子离子的离解。在此深入讨论了与这种形式主义有关的两个基本问题:保护原则和连贯性。对于依赖时间的哈密顿量,在轨迹跳跃期间要应用的守恒原理取决于电子跃迁的物理原点,其中总能量守恒和核动量守恒是两个极限情况。结果表明,采用不合适的方案会导致解离产物的动能具有非物理特征。引入了一种方法,该方法可以平滑地桥接两个极限情况,并始终应用物理上合理的保护方案。还表明,如果将相距很远的跃点的电子幅度相干地相加,则半经典形式主义可以预测错误的结果。这是形式主义的一个基本问题,如果不加注意的话,会导致不实际的结果。引入了替代方案来处理此问题,并评估了其准确性。推导了著名的Landau-Zener公式到与时间有关的哈密顿量的情况,这使人们可以大大减少半经典方法的数值实现所涉及的计算开销。最后,我们表明在强场分子解离中,一条轨迹可以“绕过”一个移动的避免穿越,在这种情况下,跳跃概率是两个紧密间隔的避免穿越区域之间干扰的敏感函数(C),1998年,美国研究所物理系。[参考文献:24]

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