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A mezoscopic model of nucleic acids. Part 1. Lagrangian and quaternion molecular dynamics
W R Rudnicki1, G Bakalarski, B Lesyng
1Interdisciplinary Centre for Mathematical and Computational Modelling, Warsaw University, Poland. W.Rudnicki@icm.edu.pl
Abstract:
This study presents a model for mezoscopic molecular dynamics simulations with objects of different scale and properties e.e. atoms, pseudoatoms, rigid and pseudo-elastic bodies, described by the external coordinates and internal degrees of freedom. The Lagrangian approach is used to derive equations of motion and a quaternion representation is used for the description of the dynamics of rigid and pseudo-elastic molecular elements. Stability of the LQMD algorithm was tested for a 10-base pair deoxynucleotide. The total energy, momentum and angular momentum are conserved for time-steps up to 20 fs.