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A new post-quantization constrained propagator for rigid tops for use in path integral quantum simulations

机译:用于路径积分量子模拟的新型刚性后顶面约束传播器

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In this paper, we extend the previously introduced Post-Quantization Constraints (PQC) procedure [G. Guillon, T. Zeng, and P.-N. Roy, J. Chem. Phys. 138, 184101 (2013)] to construct approximate propagators and energy estimators for different rigid body systems, namely, the spherical, symmetric, and asymmetric tops. These propagators are for use in Path Integral simulations. A thorough discussion of the underlying geometrical concepts is given. Furthermore, a detailed analysis of the convergence properties of the density as well as the energy estimators towards their exact counterparts is presented along with illustrative numerical examples. The Post-Quantization Constraints approach can yield converged results and is a practical alternative to so-called sum over states techniques, where one has to expand the propagator as a sum over a complete set of rotational stationary states [as in E. G. Noya, C. Vega, and C. McBride, J. Chem. Phys. 134, 054117 (2011)] because of its modest memory requirements.
机译:在本文中,我们扩展了先前介绍的后量化约束(PQC)过程。 Guillon,T。Zeng和P.-N。罗伊,化学杂志。物理138,184101(2013)],为不同的刚体系统(即球形,对称和不对称的顶部)构造近似的传播器和能量估计器。这些传播器用于路径积分模拟。深入讨论了基本的几何概念。此外,还提供了密度收敛特性的详细分析,以及朝着其精确对应物的能量估算器,并附有说明性的数值示例。后量化约束方法可以产生收敛的结果,并且是所谓的“状态总和”技术的实用替代方法,在该技术中,必须将传播器扩展为完整的一组旋转平稳状态的总和(例如EG Noya,C. Vega和C.McBride,J.Chem。物理134,054117(2011)]。

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