Molecular Dynamics of Artificially Pair-Decoupled Systems: An Accurate Tool for Investigating the Importance of Intramolecular Couplings
Michele Gandolfi,
Michele Ceotto
Abstract:We propose a numerical
technique to accurately simulate the vibrations
of organic molecules in the gas phase, when pairs of atoms (or, in
general, groups of degrees of freedom) are artificially decoupled,
so that their motion is instantaneously decorrelated. The numerical
technique we have developed is a symplectic integration algorithm
that never requires computation of the force but requires estimates
of the Hessian matrix. The theory we present to support our technique
postulates a pair-decoupling Hamiltoni… Show more
In this study, an efficient route to compute the multidimensional potential energy surfaces (PESs) for the description of quantum anharmonic molecular vibrations is presented. For large molecular systems, where the...
In this study, an efficient route to compute the multidimensional potential energy surfaces (PESs) for the description of quantum anharmonic molecular vibrations is presented. For large molecular systems, where the...
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