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首页> 外文期刊>The Journal of Chemical Physics >Gaussian-based techniques for quantum propagation from the time-dependent variational principle: Formulation in terms of trajectories of coupled classical and quantum variables
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Gaussian-based techniques for quantum propagation from the time-dependent variational principle: Formulation in terms of trajectories of coupled classical and quantum variables

机译:基于时间的变分原理的基于高斯的量子传播技术:根​​据耦合的经典变量和量子变量的轨迹来表述

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In this article, two coherent-state based methods of quantum propagation, namely, coupled coherent states (CCS) and Gaussian-based multiconfiguration time-dependent Hartree (G-MCTDH), are put on the same formal footing, using a derivation from a variational principle in Lagrangian form. By this approach, oscillations of the classical-like Gaussian parameters and oscillations of the quantum amplitudes are formally treated in an identical fashion. We also suggest a new approach denoted here as coupled coherent states trajectories (CCST), which completes the family of Gaussian-based methods. Using the same formalism for all related techniques allows their systematization and a straightforward comparison of their mathematical structure and cost. (c) 2008 American Institute of Physics.
机译:在本文中,两种基于量子相干态的相干方法,即耦合相干态(CCS)和基于高斯的多配置时变哈特里(G-MCTDH),都基于相同的形式基础。拉格朗日形式的变分原理。通过这种方法,以相同的方式正式处理了经典高斯参数的振动和量子振幅的振动。我们还建议一种在此表示为耦合相干态轨迹(CCST)的新方法,该方法完善了基于高斯的方法系列。对所有相关技术使用相同的形式主义可以使其系统化,并可以对其数学结构和成本进行直接比较。 (c)2008年美国物理研究所。

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