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A Multiwavelet Treatment of the Quantum Subsystem in Quantum Wavepacket Ab Initio Molecular Dynamics through an Hierarchical Partitioning of Momentum Space

机译:动量空间的分层划分对量子波包从头算动力学中量子子系统的多子波处理

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We present an hierarchical scheme where the propagator in quantum dynamics is represented using a multiwavelet basis. The approach allows for a recursive refinement methodology, where the representation in momentum space can be adaptively improved through additional, decoupled layers of basis functions. The method is developed within the constructs of quantum-wavepacket ab initio molecular dynamics (QWAIMD), which is a quantum-classical method and involves the synergy between a time-dependent quantum wavepacket description and ab initio molecular dynamics. Specifically, the current development is embedded within an "on-the-fly" multireference electronic structural generalization of QWAIMD. The multiwavelet treatment is used to study the dynamics and spectroscopy in a small hydrogen bonded cluster. The results are in agreement with previous calculations and with experiment. The studies also allow an interpretation of the shared proton dynamics as one that can be modeled through the dynamics of dressed states.
机译:我们提出了一种分级方案,其中量子动力学中的传播子是使用多小波表示的。该方法允许使用递归优化方法,其中动量空间中的表示可以通过基础函数的附加解耦层进行自适应地改进。该方法是在量子波包从头算分子动力学(QWAIMD)的构造中开发的,它是一种量子经典方法,涉及时间依赖性量子波包描述和从头算分子动力学之间的协同作用。具体而言,当前的开发嵌入在QWAIMD的“即时”多参考电子结构概括中。多小波处理用于研究小型氢键簇中的动力学和光谱。结果与先前的计算和实验一致。这些研究还允许将共享质子动力学解释为可以通过打扮状态的动力学建模的模型。

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