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Rotational fluctuation of molecules in quantum clusters.I.Path integral hybrid Monte Carlo algorithm

机译:量子簇中分子的旋转涨落。路径积分混合蒙特卡罗算法

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In this paper,we present a path integral hybrid Monte Carlo (PIHMC) method for rotating molecules in quantum fluids.This is an extension of our PIHMC for correlated Bose fluids [S.Miura and J.Tanaka,J.Chem.Phys.120,2160 (2004)] to handle the molecular rotation quantum mechanically.A novel technique referred to be an effective potential of quantum rotation is introduced to incorporate the rotational degree of freedom in the path integral molecular dynamics or hybrid Monte Carlo algorithm.For a permutation move to satisfy Bose statistics,we devise a multilevel Metropolis method combined with a configurational-bias technique for efficiently sampling the permutation and the associated atomic coordinates.Then,we have applied the PIHMC to a helium-4 cluster doped with a carbonyl sulfide molecule.The effects of the quantum rotation on the solvation _ structure and energetics were examined.Translational and rotational fluctuations of the dopant in the superfluid cluster were also analyzed.
机译:在本文中,我们提出了一种路径积分混合蒙特卡罗(PIHMC)方法,用于旋转量子流体中的分子。这是对相关Bose流体的PIHMC的扩展[S.Miura和J.Tanaka,J.Chem.Phys.120 ,2160(2004)]以机械方式处理分子旋转量子。引入了一种称为量子旋转有效势的新技术,将旋转自由度纳入路径积分分子动力学或混合蒙特卡洛算法中。为了满足Bose统计数据的需要,我们设计了一种多级Metropolis方法,并将其与配置偏向技术相结合,以有效地采样排列和相关的原子坐标。然后,我们将PIHMC应用于掺杂有羰基硫分子的He-4团簇。研究了量子旋转对溶剂化结构和能量的影响。还分析了超流体团簇中掺杂物的平移和旋转涨落。

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