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Eckart axis conditions, Gauss' principle of least constraint, and the optimal superposition of molecular structures

机译:Eckart轴条件,高斯最小约束原理和分子结构的最佳叠加

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The relation of the Eckart axis conditions for polyatomic vibrating molecules to the problem of optimal superposition of molecular structures has been pointed out recently [J. Chem. Phys. 122, 224105 (2005)]. Here, it is shown that both problems are intimately related to Gauss' principle of least constraint, for which a concise derivation is presented. In the context of this article, Gauss' principle leads to a rotational superposition problem of the unconstrained atomic displacements and the corresponding displacements due to a molecular rigid-body motion. The Eckart axis conditions appear here as necessary conditions for a minimum of the constraint function. The importance of Eckart's problem for extracting the internal motions of macromolecules from simulated molecular dynamics trajectories is pointed out, and it is shown how the case of coarse-grained sampled trajectories can be treated. (c) 2008 American Institute of Physics.
机译:最近指出了多原子振动分子的Eckart轴条件与分子结构的最佳叠加问题的关系[J.化学物理122,224105(2005)]。在这里,表明这两个问题都与高斯最小约束原理密切相关,为此提出了一个简洁的推导。在本文的上下文中,高斯原理导致了一个旋转叠加问题,即无约束的原子位移和由于分子刚体运动引起的相应位移。 Eckart轴条件在此处显示为使约束函数最小的必要条件。指出了埃卡特问题对于从模拟的分子动力学轨迹中提取大分子内部运动的重要性,并说明了如何处理粗颗粒采样轨迹的情况。 (c)2008年美国物理研究所。

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